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HomeMy WebLinkAboutEC Packet 4.14.2025City of Falcon Heights Environment Commission City Hall 2077 Larpenteur Avenue West AGENDA Monday, April 14, 2025 6:30 p.m. A. CALL TO ORDER: 6:30 p.m. B. ROLL CALL: Beth Mercer-Taylor (Chair) ____ VACANT ____ John Pellegrini (Vice-Chair) ____ VACANT ____ Adam Keester ____ Sophie Nagel ____ Pedro De Filippo Vannucci ____ Staff Liaison Lynch ____ Council Liaison Mielke ____ GreenCorps Member Siebert ____ C. APPROVAL OF AGENDA D. APPROVAL OF MINUTES 1. February 10, 2025 E. NEW BUSINESS 1. Undergraduate Leadership Program Students – Project Presentation 2. Climate Action Plan Draft – Ted Redmond 3. Tree Dashboard Update – Olivia Siebert 4. Sustainability Fair Update 5. SolarAPP+ Discussion F. INFORMATION AND ANNOUNCEMENTS 1. Staff Liaison Report 2. Council Liaison Report G. ADJOURN Next regular meeting date: May 12, 2025 City of Falcon Heights Environment Commission City Hall 2077 Larpenteur Avenue West Minutes Monday, February 10, 2025 6:30 p.m. A. CALL TO ORDER: 6:31 p.m. B. ROLL CALL: Beth Mercer-Taylor (Chair) _ A __ John Pellegrini (Vice-Chair) _X_ Jared Mehlhaff _X_ Adam Keester _X_ Amy Christiansen _A_ Pedro De Filippo Vannucci _X_ Sophie Nagel __X__ Staff Liaison Lynch _X_ Council Liaison Mielke _X_ GreenCorps Member Siebert _X_ C. APPROVAL OF AGENDA Vice-Chair Pellegrini made a motion to approve the agenda. Motion was seconded by De Filippo Vannucci. Motion passed by consent. D. APPROVAL OF MINUTES 1. January 13, 2025 Mielke requested a change to the minutes to state she suggested announcing the Sustainability Fair in the Park Bugle. With the changes, Vice-Chair Pellegrini made a motion to approve the minutes from January 13, 2025. Minutes were approved by consent. E. NEW BUSINESS 1. 2025 Schedule & Priorities Lynch stated she put together a new schedule and form for priorities for the year. She asked for suggestions for priorities and also requested that if a Commissioner make a suggestion, that they also volunteer to take point in the project. Nagel suggested looking into a Fix-It Clinic at City Hall and stated she would be looking into that. Pellegrini stated he would be interested in helping with resurveying the trees in the City and updating the survey. Siebert and Lynch stated they would look into how he could assist with that. Keester stated he would be interested in speaking on pollinator yards and Lawns to Legumes and possibly being an ambassador for that. Pellegrini stated part of the Energy Action Plan was to promote home tours of residents with sustainable homes. He suggested the commission look into expanding the borders to possibly include homes from surrounding cities. Keester suggested having a “No and Yes” pile for plastics recycling at the Sustainability Fair to go along with the new plastics recycling at City Hall. Commissioners agreed this would be fun. De Filippo Vannucci suggested a Nature Newsflash update in the newsletter on the Climate Action Plan and suggested creating a cheat sheet for recycling, composting, plastic recycling, and e-waste recycling. 2. GreenCorps Update Siebert gave a brief update on the work she has been doing while serving as the City’s GreenCorps member. She spoke about the tree survey she completed in the fall, stated the Climate Action Plan is underway with two team meetings down and two to go, advised Commissioners about the Home Energy Squad mailer that would be sent soon to all single-family homes in the City as part of the Energy Action Plan, gave an update on the Nature Newsflashes she’s been writing for the weekly City newsletter, stated she would be sorting through the plastics being put in the plastics recycling container at City Hall, gave an update on Sustainability Fair planning, and mentioned she has done some research on electric vehicles and heat pumps. Pellegrini asked if the City would be looking at having a GreenCorps member again next year. Lynch stated it may be an every other year application in order to save up projects to make sure a GreenCorps member had enough work to do. Keester asked about single-hauler garage collection. Lynch stated it may be good to wait until the current lawsuit underway is settled. Stated this is a very controversial topic. Keester gave an update on the first two Climate Action Plan team meetings. Stated the first meeting was very information heavy and the second meeting was more of a workshop format to refine goals. De Filippo Vannucci stated it may be helpful to rank the goals and Lynch and Siebert stated they would speak with the consultant about that. Keester suggested also advising other city commissions about the Climate Action Plan and volunteered to do that. 3. Energy Action Plan Update Siebert gave a quick update on the Energy Action Plan implementation she has been working on. Stated she has sent mailers and emails to renters and landlords throughout the City. Keester asked about ambassadors. Lynch suggested that could be something where local “experts” in different fields could be listed on the website for other residents to contact with their questions. Stated that could be a phone number or email address. Pellegrini asked about the action item to review and review City code. Lynch stated that could look like requiring multifamily buildings to install solar panels or electric vehicle chargers, or just looking at the language in code and making sure it’s not overly prohibitive to install these items. 4. Sustainability Fair Update Siebert gave an overview of presenters and tablers currently schedule for the Sustainability Fair. Commissioners had a few additional suggestions of organizations to contact. Lynch and Siebert asked for volunteers for the Sustainability Fair and had them sign up for shifts. Stated this information would next be given to the Lauderdale Environmental Commission to sign up for volunteer spots as well. 5. R&E Center Tour Siebert stated Gregory Goodwine form Ramsey County has offered to arrange a tour of the Recycling and Energy Center in Newport for the Commission. Commissioners expressed their interest in seeing the robots being used for the curbside composting program. Siebert stated she would reach out to Goodwine to set up the tour. 6. City Code Discussion Lynch stated it has recently been discovered that composting is not permitted at single- family residences that are in R-5 zoning. Stated this only effects a few homes but asked if the Commission would be okay with her updating City Code. They are okay with that. She also asked how the Commission would feel about allowing permeable driveways in the City. Stated there is currently a variance application to allow for more than the allotted impermeable pavement in the City to allow for a new driveway and garage to be built at a home on Larpenteur. She explained the home is already nonconforming and this would actually be reducing the amount of impervious surface, but that permeable driveways are not permitted in the City and that it seems it should be. City Hall’s parking lot is permeable and it can be a good option for residents. Commissioners agreed and Lynch stated she would draft an update to City Code to bring back. F. Information and Announcements 1. Staff Liaison Report Lynch and Siebert advised Commissioners the NEVI program is currently suspended by the new administration. Lynch also reminded Commissioner about the plastic bag recycling and mentioned it would be comprehensive plan time in the next year. 2. Council Liaison Report Mielke advised Commissioners that the parking building layout is going before City Council at their next meeting. She also mentioned the State Fair Task Force is looking into doing ParkMobile paid parking in the City during State Fair time. G. Adjourn Meeting was adjourned at 8:36 p.m. Next regular meeting date: March 10, 2025 ITEM FOR DISCUSSION City of Falcon Heights, Minnesota __________________________ Item Undergraduate Leadership Program – Project Presentation Description A team of four University of Minnesota students, enrolled in the Undergraduate Leadership Program (run by the Institute on the Environment), are working on a project around the future of the golf course property that involve themes of affordable housing, low-cost and sustainable energy sources, and preservation of recreational green spaces. While no immediate sale of the golf course property is planned, the idea is to seed ideas for the future. Budget Impact None. Attachment(s) N/A Action(s) Requested Staff requests Environment Commission discuss presentation by UofM students and provide feedback. Meeting Date April 14, 2025 Agenda Item E-1 Attachment None. Submitted By Hannah Lynch, Community Development Coordinator REQUEST FOR COUNCIL ACTION City of Falcon Heights, Minnesota __________________________ Item Presentation from paleBLUEdot LLC on Climate Action Plan Draft Description The City of Falcon Heights is developing a Climate Action Plan to reduce greenhouse gas emissions, address the climate crisis, and build resilience. The city has already seen the effects of climate change in variable weather conditions, air quality health risks from wildfires, and extreme heat. To address it, the city has goals to reduce greenhouse gas emissions and switch to renewable energy sources. As a GreenStep city and part of the Partners in Energy program through Xcel Energy, we are already taking action to address climate change. A Climate Action Plan is one of the most important next steps for achieving these goals. The plan is being funded by a Minnesota Pollution Control Agency grant via the Local Climate Action Grant Program and is being supported by paleBLUEdot LLC, the City's consultant. The Climate Action Plan stems from the Climate Crisis resolution adopted by the City Council in January 2023, which included a commitment to consider a Climate Action Plan with inputs from the Falcon Heights community and local partners. The Climate Action Plan team has met four times, including one meeting with important advisory stakeholders, to identify goals and actions which serve as the basis for the drafted Climate Action Plan. Ted Redmond, principal from paleBLUEdot LLC, is here tonight to present the draft. There will be one more opportunity for residents to provide feedback on the Climate Action Plan at the Sustainability Fair on Saturday, April 26, with the goal of adoption occurring in May. Budget Impact N/A Attachment(s) • Draft Falcon Heights Climate Action Plan Action(s) Requested No action is requested from the Commission for this informational item. Meeting Date April 14, 2025 Agenda Item E-2 Attachment Draft Climate Action Plan Submitted By Hannah Lynch, Community Development Coordinator City of Falcon Heights Climate Action Plan Draft Plan Review April 2025 Introduction Services: climate planning sustainability + resilience consulting renewable energy + net zero planning Our mission: To hasten the transition to an authentically sustainable, no carbon economy and to elevate the public discourse. Ted Architect Urban Planner Renewable Energy Consultant Climate Planner Colleen Educator Community Engagement Consultant Climate Planner Introduction Climate, Sustainability, and Energy Planning Experience (partial): 70+ Projects in 22 states Midwest: 50+ Communities Vulnerability Assessment GHG Inventory and Forecast Ground Cover Renewable Energy Potential This was a process document to help the planning team and have a place to start the conversation! Baseline Studies+Community Survey/Input 84% Moderately, Very, or Extremely Concerned about climate change •24 of the 25 hottest years on record have occurred since the year 2000 •The hottest years of all have been the last 11 years Q+A Next Steps •Draft plan made available for community review and input. •Will process input received and coordinate with City staff on appropriate plan refinements accordingly. •We’ll bring the final draft back to the Environmental Commission and City Council. Climate Action Plan April 2025 3 -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Table of Contents Plan At A Glance (summary) ii Introduction 1-1 Introduction Planning Process Climate Change Impacts Greenhouse Gas (GHG) Emissions Plan Framework GHG Reduction Goal Plan Impacts The Plan 2-1 Transportation and Land Use Buildings and Energy Waste Management Water and Wastewater Local Food and Agriculture Greenspace and Ecosystems Implementation 3-1 What You Can Do 4-1 Appendix A References A-1 Appendix B Potential Cumulative Community Cost and Savings from Plan Implementation B-1 Appendix C Abbreviations and Glossary of Terms C-1 Appendix D Acknowledgements E-1 FALCON HEIGHTS CLIMATE ACTION PLAN | 3-2 BY 2035 BY 2050 6 Sectors (Click icon to view) Transportation Buildings/Energy Waste Water Food Greenspace Achieving GHG Emission Reductions of 53% 5% 40% 15% 8% lower GHG emissions fewer VMT increase in public transit registered EVs increase in density 45% 22% 5% 45% 20% lower GHG emissions renewable electricity les electricity use less fuel combustion fuel switching from fossil 5% 5% Increased Increased less water use reduction in wastewater stormwater resilience water restoration 20% 10% 10% 10% lower GHG emissions less solid waste more organics diversion more recycling diversion Increased Increased Decreased access to local food production of local food hunger and food waste 11% 15% 10% more tree canopy cover less turf, more native grass less dark impervious surfaces focused on 23 Strategies 12,894 Metric tons (MT CO2e) in 2023 from vehicle use citywide 19,681 Metric tons (MT CO2e) in 2023 from building energy citywide 881 Metric tons (MT CO2e) in 2023 from solid waste citywide To reduce our GHG emissions ...and enhance our Climate Resilience Extreme Heat / Weather Flooding Air Quality Food Insecurity Infrastructure Failure Plan At A Glance 1 -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Click here to return to TOC Falcon Heights has long been a leader in environmental stewardship, embracing sustainability as a core value of our community. Over the years, the City has adopted forward-thinking “green” practices— becoming one of Minnesota’s ffrst GreenStep Cities in 2009 and pioneering projects like a 40 kW solar installation on City Hall in 2012, community gardens, a native plant ordinance, and LED streetlight upgrades. This strong foundation reifects a commitment to a high quality of life through sustainable infrastructure and conservation. Climate Emergency Resolution Climate change is already impacting Falcon Heights, bringing warmer winters, hotter summers, and extreme weather. The City Council responded by unanimously declaring a Climate Emergency in January 2023, committing Falcon Heights to urgent action and a just transition. This Climate Action Plan, supported by a Minnesota Pollution Control Agency grant, is a key step in meeting that commitment. Current Initiatives and Partnerships Building on our strong foundation, Falcon Heights now holds Step 5 recognition in the GreenStep Cities program, reifecting ongoing leadership in energy savings, waste reduction, and sustainability. The City is also a Charging Smart community, recognized for electric vehicle readiness. With Xcel Energy, we’ve launched an Energy Action Plan to cut emissions—progress driven by residents and businesses. Falcon Heights collaborates with Ramsey County and nearby cities on recycling, composting, and resilience projects, and engages residents through events like the annual Sustainability Fair. These efforts show what’s possible when our community works together for a sustainable future. A Vision for the Future This Climate Action Plan outlines a clear path to a low-carbon, resilient future. It sets ambitious goals aligned with Minnesota’s climate targets—cutting emissions 47% by 2035 and reaching net zero emissions by 2050. Shaped by public input, the plan calls on everyone—residents, businesses, and partners—to play a role. Together, we can protect what we value today and create a thriving, resilient Falcon Heights for generations to come. QUICK FACTS 19,681 Metric tons (MT CO2e) in 2023 from building energy citywide 12,894 Metric tons (MT CO2e) in 2023 from vehicle use citywide 881 Metric tons (MT CO2e) in 2023 from solid waste citywide Click here to return to TOC Introduction FALCON HEIGHTS CLIMATE ACTION PLAN | 1-2 Co-Benefits of Climate Action Planning The World Health Organization reports growing evidence that climate policies can deliver both cost savings and signiffcant health improvements. Community actions to cut greenhouse gas emissions in sectors like housing, transportation, and energy create multiple co- beneffts beyond mitigating climate change. These include cleaner air, better public health, reduced health risks, greater resource elficiency, stronger local economies, and increased resilience of ecosystems and infrastructure.1,2,3,4 These outcomes not only improve quality of life and natural resources but also generate ffnancial gains. Positive Financial Impacts Many climate actions offer direct ffnancial beneffts, such as lower fuel costs, and indirect savings, particularly from improved air quality. Research shows that health and air pollution beneffts can offset much of the cost of these initiatives.5 Additional savings come from increased resilience, such as reduced reliance on fossil fuels—valued locally at $141 per metric ton (MT) of greenhouse gas reductions.6,7,8 Health beneffts may be even greater, with estimates ranging from $50 to $380 per MT of GHG reduced globally.9 Improved Quality of Life Implementing climate action plans like this one can enhance quality of life by expanding mobility options, creating jobs, and reducing poverty and inequality.10 These co-beneffts strengthen community well-being as we address climate challenges. Improved Natural Resources Taking action on climate change also helps protect ecosystems that provide essential services.11 For example, expanding Falcon Heights' tree canopy to meet this plan’s goals could increase the annual economic value of community trees by up to $22,500. Other strategies will improve residents’ access to green spaces, supporting both environmental health and quality of life.12 Common Co-Benefits of Climate Planning Reduced Costs Improved Energy Resilience Reduced Pollution Safer Streets Improved Community Resilience Protected / Enhanced Ecosystems Improved Mobility Improved Quality of Life 1 -3 | FALCON HEIGHTS CLIMATE ACTION PLAN Planning Process The Falcon Heights Climate Action Plan was developed collaboratively with a 31 -member planning team, including community members, businesses, institutions, City commissions, and Falcon Heights staff. The planning team considered, created, and reviewed strategies and actions for each of the sectors included in this plan (see Plan Framework). The team participated in planning workshops from January to April 2025. The process included community engagement including community-wide surveys and input meetings and events. Goals and actions were shaped by community feedback, expert analysis, and best practices from other Minnesota and U.S. cities. Through workshops, the team reffned and prioritized strategies, resulting in a co - authored plan that reifects the voices of Falcon Heights. Research Based Climate Action Plan To establish the plan’s goals, strategies, and actions, the planning team conducted extensive research and produced several key assessments. These included studies on climate vulnerability, ground cover and tree canopy, greenhouse gas emissions, and renewable energy potential, providing critical data on climate risks, carbon sequestration, emissions trends, and solar opportunities. A ffnal Climate Action Baseline Study synthesized these ffndings, reviewed key community metrics, and outlined preliminary sector-speciffc goals to guide planning discussions. Click on the icons below to view these documents: 14 months Planning timeframe 100+ Community members engaged 2 Community meetings and events 2 Online community input surveys 31 Planning team members 5 Foundational research documents Climate Action Baseline Study Climate Vulnerability Assessment Community-Wide GHG Inventory Ground Cover, Tree Canopy & Carbon Sequestration Study Community-Wide Renewable Energy Potential Study FALCON HEIGHTS CLIMATE ACTION PLAN | 1-4 What We Heard Community input was gathered through two surveys with over 75 responses from residents and businesses.13 The flrst gathered climate concerns and action ideas; the second collected feedback on draft strategies. This input shaped the plan to refiect local priorities. It is important for Falcon Heights to take action to prepare for the projected impacts of climate 83% It is important for Falcon Heights to take action to reduce greenhouse gas emissions. It is important for Falcon Heights to be a leader in proactively addressing climate change. The City’s Role in Climate Action Respondents reported that they agree or strongly agree … Key Themes Key themes that emerged from the community included: Support for Municipal Action and Leadership 84% of respondents are concerned about climate change. Additionally, 83% support the City preparing for impacts, 82% back reducing emissions, and 74% want Falcon Heights to lead on climate. Renewable Energy 79% support requiring rental properties to meet energy elficiency standards to reduce costs while 67% support incentives for elficiency and solar readiness, and 61% support solar installation incentives. For Additional Information See (click icon) Survey Summary Impacts on Vulnerable Populations Over 80% of respondents are concerned about climate change risks to vulnerable groups. 82% 74% Protect Resources 84% are concerned about air quality, 82% about impacts on ecosystems, and 77% about risks to clean water. How concerned are you about climate change? Climate Experience 91% have noticed signs of climate change 71% have been personally impacted. 1 -5 | FALCON HEIGHTS CLIMATE ACTION PLAN Photo: Mick Richards Climate change is a global issue with serious local impacts. Scientists agree that rising greenhouse gas emissions are destabilizing Earth’s climate. Twenty-four of the 25 hottest years on record have occurred since 2000. In Minnesota, much of the state has warmed nearly 3°F over the past century, causing drier soils and a 20% increase in heavy rain events.14,15,16 Climate Change in Falcon Heights Falcon Heights is already experiencing these changes. Between 1980 and 2018, the city saw rising average temperatures, more days above 95°F, more heavy rain events, and fewer days below 32°F.17,18 One of the most notable shifts is in precipitation patterns. While overall annual precipitation has increased, the change is uneven. Fall and winter precipitation rose up to 15.5%, while spring and summer levels remained largely unchanged.19 2024 2023 2016 2020 2019 2017 2015 2022 2018 2021 2014 2010 2005 2013 2007 2009 2012 2006 2002 2003 1998 2011 2008 2001 2004 The Hottest 25 Hottest Global Years on Record27 Climate Change Impacts Climate Projections for Falcon Heights7 Over their lifetime, a child in Falcon Heights can expect:20,21 Climate Conditions Baseline Mid-Century (2050 average) End of Century (2100 average) Average Daily Maximum Temperature 55° F 62°F 62°F - 67°F Number of Days Per Year with Maximum > 95° F 2 23 23 - 52 Number of Days Per Year With Minimum < 32° F 154 131 130 - 107 Change in Growing, Allergy, & Tick/Mosquito Season22,23 9 days 23 days 24-37 days Average Annual Precipitation 24 26" 24% 7-36% Increase in Heavy Precipitation Events (Days with > 1" Rainfall) N/A 27% 27-55% Air Conditioning Demand (Cooling Degree Days) 700 114% 114-214% Heat Related Increase In Per Capita Electricity25 N/A 36% 36-53% FALCON HEIGHTS CLIMATE ACTION PLAN | 1-6 For Additional Information See (click icon) Vulnerability Falcon Heights’s Climate Risks The anticipated climate changes in Falcon Heights over the next few decades pose potential risks to residents, with certain populations— such as children, seniors, and individuals with disabilities—being more vulnerable to these impacts. Below are some of the most notable risks to the community.7 Extreme Heat and Weather Certain individuals face higher risks of stress, health issues, or even death from extreme weather events like severe storms, hail, heavy rain events, and heat waves.38,39 Susceptibility to heat stress increases with pre-existing conditions such as diabetes and heart disease, as well as demographic, socioeconomic, and environmental factors like land cover. Flooding The latest National Climate Assessment shows that heavy precipitation events are already on the rise across the U.S. and in Minnesota. These intense rainfall events are expected to continue increasing throughout the state. The growing frequency of both extreme and total precipitation is likely to contribute to more frequent over-bank ifooding (river and lake ifooding) and ifash ifoods. Air Quality Climate change is anticipated to impact air quality through various channels, including higher levels of allergens and pollen, increased regional ozone concentrations, greater risks of smoke from wildffres, and elevated particulate pollution and dust. Food Insecurity Climate change is likely to destabilize cropping systems, interrupt transportation networks, and trigger food shortages and spikes in food cost. Infrastructure / Power Failure Extreme weather events, ifooding, ifash ifooding, and the growing daily challenges from climate variability all pose risks to the stability of our aging infrastructure. Power outages, road damage, bridge collapses, and water system failures are signiffcant physical climate risks to the community, particularly for those most vulnerable to climate impacts. 1 -7 | FALCON HEIGHTS CLIMATE ACTION PLAN Measuring, tracking, and reducing greenhouse gas (GHG) emissions is essential for effective climate action. Understanding our emissions helps us focus efforts on minimizing our community's climate impact. In Falcon Heights, community-wide emissions decreased from 37,466 MT CO₂e in 2019 to 33,457 MT CO₂e in 2023, a reduction of nearly 11%.6 Greenhouse Gas Emissions 2022 GHG EMISSIONS IN Falcon Heights 6 12,894 12,514 7,168 881 MT CO2e from transportation MT CO2e from natural gas MT CO2e from electricity MT CO2e from solid waste 38.5% 37.4% 21.4% 2.6% Total Vehicle Miles Traveled (VMT): 27,333,000 Gasoline consumed (est): 1,035,911 gallons Diesel fuel consumed (est): 398,464 Electric Vehicle (EV) share of total: 2.7% Non-residential therms used: 1,186,300 Residential therms used: 1,175,347 Non-residential kWh used: 17,215,000 Residential kWh used: 12,964,000 Customer-owned renewable share: 0.58% Total solid waste generated: 6,160 tons Solid waste landfflled: 669 tons Solid waste used for waste-to-energy: 2,330 tons Solid waste recycled: 1,936 tons Organic solid waste recycled/composted: 1,224 tons Inside The Numbers: FALCON HEIGHTS CLIMATE ACTION PLAN | 1-8 For Additional Information See (click icon) GHG Inventory The City’s total emissions for 2023 are equal to 656 Million cubic feet of human-made greenhouse gas. This volume of atmosphere is equal to a cube 869 feet on each face shown here west of Snelling on Larpenteur Ave as viewed from Como Avenue from over 1.5 miles away. How Large Are The Citywide GHG Emissions? Emissions Per Capita Eagan, MN Edina, MN St Paul, MN North Mankato, MN Minneapolis, MN Warren, MN New Brighton, MN Maplewood, MN Winona, MN Woodbury, MN Falcon Heights How Do We Stack Up? Falcon Heights emits 6.73 MT CO₂e per person, signiffcantly below the U.S. average of 20.7 MT CO₂e.6 The chart on the left compares Falcon Heights' emissions to other Minnesota communities. 1 -9 | FALCON HEIGHTS CLIMATE ACTION PLAN The plan guides Falcon Heights’s municipal operations and citywide climate action, covering GHG reductions and climate resilience. It includes an implementation section and eight sectors, each with goals and detailed actions for implementation. Plan Framework Transportation and Land Use Strengthening Falcon Heights’s mobility resilience while reducing emissions and environmental impacts. Sector Strategies: Buildings and Energy Increasing building resilience through energy elficiency, renewable energy adoption, and decreased on-site fuel use. Sector Strategies: Waste Management Reducing GHG emissions by increasing recycling and organic diversion, and decreasing overall waste. Sector Strategies: Water and Wastewater Decreasing water consumption and wastewater effects while improving resilience to ifooding and stormwater. Sector Strategies: Local Food and Agriculture Strengthening the resilience, accessibility, and security of the community’s local food system. Sector Strategies: Greenspace and Ecosystems Encouraging community adaptation by increasing green infrastructure and strengthening ecosystem resilience. Sector Strategies: • Reducing vehicle use • Increasing public transit use • Increasing population density (within already developed land) • Increasing zero emission vehicle registration • Increasing community “EV Readiness” • Reducing energy use • Switching from fossil fuel combustion • Increasing renewable energy use • Reducing amount of solid waste produced • Recycling more of our waste • Sending less organic waste to landfflls • Using less water • Preparing for more and heavier rainfall • Keeping water clean and protecting it • Making it easier to get locally grown food • Growing more food in the community • Cutting down on food waste and reducing hunger • Planting more trees to increase shade and tree coverage • Planting more pollinator-friendly native plants instead of lawns • Reducing the amount of pavement Click here for section Click here for section Click here for section Click here for section Click here for section Click here for section FALCON HEIGHTS CLIMATE ACTION PLAN | 1-10 This plan aligns with science-based greenhouse gas reduction targets to limit global warming to 1.5°C above pre -industrial levels. Meeting this target would greatly reduce climate risks and impacts.33,34 The CAP sets both interim and long-term goals.: City of Falcon Heights GHG interim reduction goal: “To reduce citywide GHG emissions by 47% below 2019 levels by 2035.”* City of Falcon Heights’s long-term GHG goal: “To achieve net zero emissions by 2050.”** This citywide goal guides sector-speciffc strategies. Sector goals aim to evenly distribute greenhouse gas reductions and meet the community's overall emissions targets. They are designed to be achievable yet ambitious, surpassing business-as-usual outcomes. * Goal aligns with IPCC recommended reduction targets which use 2019 as the baseline year35 ** A community, business, institution, or building that produces the same amount of energy it consumes through renewable and GHG emission-free sources, resulting in zero net emissions over a year. See Glossary of Terms for more information. Long-Term Goal Interim Goal Burnsville Reduce community-wide GHG emissions 40% below 2005 levels by 2030 and 80% below 2005 levels by 2050. Eagan To reduce community-wide GHG emissions 55% below 2014 levels by 2035, and net zero emissions by 2050 . Edina To reduce community-wide GHG emissions 45% below 2019 levels by 2030, and net zero emissions by 2050 . Maplewood Reducing greenhouse gas emissions to 20 percent of the City’s 2015 baseline levels by 2050 (an 80 percent reduction). Minneapolis 100% renewable energy for city operations by 2022 and citywide electricity by 2030. New Brighton To reduce community-wide GHG emissions 42% below 2013 levels by 2030, and achieve carbon neutrality by 2050 . St Louis Park 100% renewable electricity citywide by 2030, carbon neutrality by 2040. St Paul Carbon neutral municipal operations by 2030, carbon neutral citywide by 2050. GHG Reduction Goal Survey of Peer Community Carbon Reduction Goals 1 -11 | FALCON HEIGHTS CLIMATE ACTION PLAN Long-term emission reduction potentials of the strategies and actions included in this plan have been modeled based on projected energy and fuel reductions and adoption rates of renewable energy and low/no emission transportation modes outlined in the strategies and actions. From this modeling, we know that with the successful implementation of the strategies outlined in this climate action plan, citywide annual GHG emissions are projected to drop to 19,892 MT CO2e by 2035, a 46.9% decrease below 2019 levels. The potential cumulative GHG emissions reductions over the 10 year implementation period are estimated at over 42,498 MT CO2e - equal to the elimination of over 834 million cubic feet of greenhouse gases by 2035.6 Plan Impacts Business-as-usual Reductions Mobile Combustion Reductions Electricity Reductions Stationary Combustion Reductions Solid Waste Reductions Remaining Annual Emissions Note: Reductions Achieved refer to emissions reductions that have occurred since 2014 based on the City of Falcon Heights Community GHG Inventory. 'Business-as-Usual' (BAU) Reductions are anticipated reductions resulting from existing requirements or commitments, such as federal vehicle fuel elficiency standards and electric utility carbon-reduction commitments, which are outside the scope of this plan. FALCON HEIGHTS CLIMATE ACTION PLAN | 1-12 Potential Economic Savings Below is an estimate of the cumulative community-wide economic savings potential of implementing the plan through 2035. = + + + Transportation Economic Potential*: Sector Savings: $9,517,233 Sector Cost Increases: -$1,511,464 Potential Sector Net Cost Savings: $8,005,769 Buildings + Energy Economic Potential*: Sector Savings: $3,526,485 Sector Cost Increases: -$2,543,594 Potential Sector Net Cost Savings: $982,892 Waste Reduction Economic Potential*: Residential Savings: $463,869 Commercial Savings: $1,531,208 Potential Sector Net Cost Savings: $1,995,078 Social Cost of Avoided Carbon: $6,002,051 Estimated Localized Social Cost of Carbon: $141 Cumulative Community Savings Potential: $16,985,789 * Estimated community-wide costs and savings are calculated based achieving goal statements and are not calculated on an individual action basis. Values do not include economic potential of job creation and new business potential represented in the plan actions. See Appendix for a detailed illustration of how cumulative costs and savings are arrived at. 2 -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Transportation is energy- and resource-intensive. Beyond road vehicles, off-road equipment (such as construction machinery and gas-powered lawn mowers) also burns signiffcant fossil fuel. Globally, transportation accounts for nearly one-third of all energy use and roughly one-quarter of energy-related carbon emissions.1 In Falcon Heights, transportation contributes about 38% of the city’s greenhouse gas emissions.2 As electricity gets cleaner, transportation’s share of emissions could grow— making it a key focus for climate action. There are many ways to make transportation more sustainable while improving quality of life and equity, including: • Shared and Public Transportation: Riding together on buses, trains, or carpools means fewer single-occupancy cars on the road. This cuts tralfic and pollution while improving access to transportation for everyone. • Bicycle-sharing stations like Nice Ride Minnesota offer a clean and active way to get around. Encouraging walking, biking, or e-scooter use reduces air pollution and improves public health. • Electric Vehicles and Clean Fuels: Transitioning to electric vehicles (EVs) and renewable fuels can dramatically reduce transportation emissions. EVs produce no tailpipe pollution, improving air quality for everyone – especially in lower-income neighborhoods with more tralfic pollution and fewer EVs. The Link Between Land Use and Transportation Emissions Transportation emission strategies often focus on technology and low - carbon fuels, but studies show smart growth and compact development are also key. Denser, well-planned communities reduce driving and support more energy-elficient housing. In the 125 largest U.S. urban areas, a 10% increase in population density could cut CO₂ emissions by 4.8% from travel and 3.5% from residential energy use.3 The Plan: Transportation and Land Use QUICK FACTS 38.5% of community-wide GHG emissions in 2023 from transportation 27,333,000 Vehicle Miles Traveled in 2023 45.9% Commuters drove alone in 2023 10.3% Commuters use public transit 87 Battery Electric Vehicles (BEV) registered in 2023 Click here to return to TOC For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover FALCON HEIGHTS CLIMATE ACTION PLAN | 2-2 TRANSPORTATION AND L AND USE TL 1- 1 Adopt and implement a Living Streets policy. (Note: Living Streets are green, multimodal streets that enhance walking and biking conditions, safety, and neighborhood livability while reducing environmental impacts and maintenance costs. TL 1- 2 Create an Active Mobility Plan emphasizing multimodal transportation, transit access, bike/pedestrian safety, and infrastructure improvements. Prioritize protected bike lanes. Review Ramsey County’s bike/pedestrian plan and partner with adjacent communities, the University of Minnesota and State Fair on connected routes. TL 1- 3 Establish a policy requiring a Transportation Demand Management (TDM) plan, including a transit component, for all new developments and redevelopment projects. TL 1- 4 Collaborate with partners on a branded campaign and incentives to promote alternative transportation, focusing on short trips and equity-driven support for bike and eBike adoption. TL 1- 6 Develop and distribute a resident-focused brochure through landlords highlighting local parks, transit options, bike/walk routes, sustainability resources, waste and recycling programs, renewable energy opportunities, and related incentives, with links to current City information. In 2023, Falcon Heights’ total vehicle miles traveled (VMT) was 27.3 million miles. VMT rose 1% from 2014 to 2019 but then fell, ending 2023 20% below 2014 levels.2 Reducing VMT by 5% would eliminate 1.7 million miles and cut annual greenhouse gas emissions by over 640 MT CO₂e4,5 Expanding safe, accessible bike and walking routes to schools, shops, and recreation areas can help reduce vehicle use for daily trips. Decrease community- wide Vehicle Miles Traveled (VMT) by 5% by 2035. STRATEGY TL1: ACTIONS TL 2- 1 Collaborate with Metro Transit and partners to secure funding for free or reduced fares for Falcon Heights residents and expand transit access through fare reductions, Bus Rapid Transit, and other strategies. TL 2- 2 Collaborate with Metro Transit and partners to enhance bus stop infrastructure according to industry best practices, including pullouts, shelters, and safe pedestrian crossings. TL 2- 3 Partner with Metro Transit and others to develop and distribute educational materials about public transit options and resources. TL 2- 4 Work with local businesses to promote and expand Metro Transit's Guaranteed Ride Home and Employer Sponsored Pass programs for employees and students. Increase public transit commuter ridership 4% by 2035. STRATEGY TL2: ACTIONS Strategy Co-Beneffts Since 2013, Falcon Heights' 6,100 workers have averaged a 19.9- minute commute. About 97% commute in from outside the city, while 87% of employed residents work elsewhere.6,7 With vehicle operating costs at $0.81 per mile, each 1% shift to public transit could reduce driving by 273,000 miles and save commuters over $200,000 annually.8 Strategy Co-Beneffts 2 -3 | FALCON HEIGHTS CLIMATE ACTION PLAN TRANSPORTATION AND L AND USE Increase average population per developed acre by 8% by 2035. STRATEGY TL3: Increase battery electric vehicle (BEV) use to 15% of vehicles on the road by 2035. STRATEGY TL4: TL 3- 1 Amend zoning ordinances to support higher-density, walkable neighborhoods by increasing building heights, allowing approved densities, encouraging Accessory Dwelling Units (ADUs), promoting Transit-Oriented Development (TOD) near transit stations, and supporting mixed-use developments. TL 3- 2 Use the Comprehensive Plan process to identify vacant or underutilized land suitable for higher-density development, walkability improvements, transit access, or greenspace. TL 3- 3 Attract and support mixed-use, multimodal redevelopment projects on priority sites identiffed through the Comprehensive Plan. ACTIONS TL 4- 1 Collaborate with Xcel Energy and partners to expand incentives for electric vehicles (EVs), residential chargers, and eBike adoption, including low-cost loan or bulk- purchase programs to reduce costs. TL 4- 2 Provide information to the community through workshops, an EV guide, and enhanced website content highlighting EV technology, incentives, and available programs. TL 4- 3 Partner with Ramsey County Environmental Health to host and promote a Falcon Heights EV Fair, providing education, test drives, and vendor interaction. TL 4- 4 Through trash hauler permitting, promote or require ifeet elficiency improvements such as fuel-elficient practices, optimized routing, renewable or low-emission fuels, and advanced technologies. Require annual reporting on progress. ACTIONS The city has 875 acres of developed land, covering 61% of its total area and supporting 5,232 residents—an average of 6 residents per developed acre.9,10 Falcon Heights’ population could grow by up to 12.8% by 2035.15 Research shows that every 1% increase in population-weighted urban density reduces household travel CO₂ emissions by 0.12% to 0.48%.33,11 Zoning policies and incentives that promote higher density in developed areas, while ensuring affordable housing and preventing gentriffcation, can help reduce citywide emissions. Strategy Co-Beneffts Shifting vehicles communitywide from fossil fuels to low- and zero-emission alternatives is key to cutting long-term emissions. Electric vehicles (EVs) reduce vehicle emissions by 50–70%, with battery production impacts offset within two years.12 Falcon Heights has about 3,200 vehicles but only 87 battery electric vehicles (BEVs) as of January 2024.4,13 Nationally, EV sales have grown ffvefold in three years, showing strong potential for local adoption.14 Each 1% shift to EVs in the city could reduce annual emissions by up to 112 MT CO2e, even with added electricity use.2,5 Strategy Co-Beneffts FALCON HEIGHTS CLIMATE ACTION PLAN | 2-4 TRANSPORTATION AND L AND USE TL 5- 1 Implement an "EV Ready" ordinance requiring new developments to include EV charging infrastructure and dedicated parking. TL 5- 2 Create an Electric Vehicle Infrastructure Readiness Plan that assesses current and future charging needs, maps existing stations, identiffes expansion opportunities in public, commercial, and multi-family residential areas, and prioritizes equitable access in low/moderate-income neighborhoods. TL 5- 3 Promote funding opportunities and resources for local businesses to provide electric vehicle charging stations. TL 5- 4 Identify an existing or develop and distribute an "EV Ready Guide" with building readiness standards and ifeet conversion resources. Make the community “EV- ready” with electric vehicle charging stations in every public and private parking lot or ramp by 2030. STRATEGY TL5: ACTIONS TL 6- 1 Conduct phased ifeet analyses to transition to electric and alternative fuel vehicles and equipment, including emergency, non-emergency, and heavy-duty segments. Identify replacements, infrastructure requirements, and facility upgrades. TL 6- 2 Adopt a policy requiring new City ifeet vehicles to be electric or use low/no-carbon fuels by 2030 for light-duty and by 2040 for medium/heavy-duty vehicles. TL 6- 3 Implement and enforce a city operations anti-idling policy of combustion vehicles. TL 6- 4 Create an "Eco Driving Guide" to promote fuel elficiency, distribute it to City employees, include it in new employee training, and make it available to Falcon Heights residents and businesses. Convert 100% of the municipal non-emergency ifeet and equipment to EVs and improve remaining combustion vehicle fuel elficiency by 10% by 2035. STRATEGY TL6: ACTIONS As a core climate action strategy, communities are prioritizing EV readiness as by expanding Level 2 and DC fast charging infrastructure across public and private parking areas. This widespread access reduces range anxiety, increases EV adoption, and cuts transportation emissions.15 Beneffts include cleaner air, improved public health, and economic growth through job creation and cost savings.16 Making all parking EV-ready also supports equitable access, strengthens transportation systems, and supports community resilience. Strategy Co-Beneffts Falcon Heights can lead in sustainable transportation by transitioning its ifeet to EVs, reducing emissions, costs, and supporting EV adoption. In 2023, gasoline made up 43% of ifeet fuel use (1,141 gallons). Converting to EVs by 2035 could cut emissions by 10 MT CO₂e annually, with a 10% increase in elficiency of remaining vehicles saving another 2 MT CO₂e.2, 17 Strategy Co-Beneffts 2 -5 | FALCON HEIGHTS CLIMATE ACTION PLAN Energy use in buildings is a major contributor to greenhouse gas (GHG) emissions from both residential and commercial properties. Emissions come from direct on-site fossil fuel use, like heating and cooking, and from off-site power generation. Prioritizing elficient building design improves long-term energy performance and comfort. Increasing elficiency reduces emissions, lowers energy costs for households and businesses, and strengthens climate resilience. Improving Falcon Heights’ built environment also creates environmental, economic, and social beneffts for the community. Residential Energy In 2023, Falcon Heights’s residential sector consumed over 12.9 million kWh of electricity (6,324 kWh per household) and 1.175 million therms of natural gas (573 therms per household). This resulted in 9,059 MT CO2e of GHG emissions, about 46% of citywide building energy emissions.1 Non-Residential Energy The non-residential sector consumed over 17.2 million kWh of electricity (2,816 kWh per job) and 1.186 million therms of natural gas (194 therms per job) in 2023. This resulted in 10,607 MT CO2e of GHG emissions, about 54% of citywide building energy emissions.1 For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover QUICK FACTS 58.8% of community-wide GHG emissions in 2023 from buildings and energy 30,240,951 kWh or electricity used in 2023 2,361,647 Therms of natural gas used in 2023 78.9% of all homes were built before 1980 52 solar arrays community- wide in 2023 Click here to return to TOC The Plan: Buildings and Energy FALCON HEIGHTS CLIMATE ACTION PLAN | 2-6 B UILDINGS AND ENERGY Homes built between 2000 and 2009 use 15% less energy per square foot than 1980s homes.2 Retrofftting older homes offers signiffcant potential to reduce citywide energy use, especially natural gas. In Falcon Heights, 85% of owner-occupied and 69% of renter-occupied homes were built before 1980, making energy upgrades a key opportunity.3,4 Building permits suggest up to 20% of residential units could be added, renovated, or replaced over 10 years.3 Improve total Citywide building energy elficiency 5% for electricity and 15% for natural gas by 2035. STRATEGY BE1: ACTIONS BE 2- 1 Coordinate an annual group purchase campaign for residents and small businesses to reduce costs of electriffcation, energy elficiency, and weatherization upgrades (e.g., air and ground source heat pumps). Prioritize equity in program design, support local contractors, and consider integration with renewable energy purchase programs. Goal: 30 households and 10 businesses annually. NOTE: Action may be implemented in combination with a renewable energy group purchase program action. BE 2- 2 Collaborate with partners to expand and promote incentives for low-income residents to electrify their homes. Goal: 15 households annually. BE 2- 3 Address misconceptions and promote new technologies through educational materials and City communications. Achieve 30% building "fuel switching" from on-site fossil fuel combustion to electriffcation or renewable fuels by 2035. STRATEGY BE2: ACTIONS Strategy Co-Beneffts 64.7% of the city’s residential heating is provided by natural gas and 28.5%.5 As Falcon Heights’s electric grid nears carbon neutrality, building heating fuel will become an increasingly important target for emission reductions.6 Reduction, and ultimately the elimination of all fossil fuel heating (oil, propane, natural gas) in the buildings sector will be required in order to achieve community wide carbon reductions.1,7 Strategy Co-Beneffts BE 1- 1 Collaborate with partners to establish a program achieving deep energy retroffts for 80% of low/moderate-income households by 2030. Goal: 100 households annually, each achieving 15% energy reductions. (Comprehensive Plan) BE 1- 2 Offer and promote fully subsidized Home Energy Squad visits for income-qualiffed residents. BE 1- 3 Adopt an energy benchmarking ordinance (Comprehensive Plan) BE 1- 4 Require city-funded projects—and encourage other developments needing PUD, CUP, and zoning approval—to meet energy elficiency standards (e.g., SB2030, LEED Gold, Enterprise Green Communities, ICC/ASHRAE 700). (Comprehensive Plan) BE 1- 5 Consider establishing a Mayor’s Home Energy Challenge to encourage and incentivize residential energy-elficiency upgrades. BE 1- 6 Adopt and promote a voluntary net-zero energy code through the building permit process (Comprehensive Plan) 2 -7 | FALCON HEIGHTS CLIMATE ACTION PLAN BE 3- 1 Collaborate with partners to implement and promote an annual Residential Solar Group Purchase program, supported by a program administrator such as MREA or others experienced in solar group purchase programs. Goal: 15 participants and 100 KW installed Annually. BE 3- 2 Establish a policy to require renewable energy within PUD ordinance (Comprehensive Plan) BE 3- 3 Identify top privately-owned sites for Solar PV installations (rooftop, ground, carport) and develop site assessments detailing estimated costs, energy generation, and 20-year economic payback. Provide assessments to additional property owners biennially through 2032 to maximize solar incentives. Coordinate with the Commercial property and Industrial property Solarize program. BE 3- 4 Organize an annual group solar purchase program for commercial and industrial properties, coordinating with the City's "Top Solar Potentials" initiative. Goal: 5 participants installing 150 kW annually. BE 3- 5 Organize education and outreach promoting net-zero energy development, renewable energy rebates, and tax credits; provide resources on the City's Energy Hub website. (Comprehensive Plan) ACTIONS BE 4- 1 Require municipal buildings to achieve and maintain ENERGY STAR ratings of 75 or higher, meet or exceed IGCC standards, and report energy use publicly. Require all facility design and construction RFPs for new or major renovation projects to evaluate opportunities for achieving Net Zero Energy. BE 4- 2 Conduct energy audits of all City facilities, including Dark Sky LED outdoor lighting guidance. Use audit results to prioritize facility improvements in the Capital Improvement Plan, with implementation within 5 years. ACTIONS BUILDINGS AND ENERGY Increase customer-owned or purchased renewable electricity to 22% of total building electricity use citywide by 2035. STRATEGY BE3: Improve total municipal building energy elficiency by 5% for electricity and 15% for natural gas by 2035. STRATEGY BE4: Grid electricity emissions are expected to decline, but increasing consumer renewable energy purchases remains essential to meet GHG reduction goals as well as offering cost savings and increased resilience.1,6,8,9 As of 2023, Falcon Heights had 52 customer-owned solar systems generating 1 MW.10 Those unable to install solar can buy renewable energy from their utility to reduce their emissions and support grid decarbonization.11,12,13 Strategy Co-Beneffts In 2023, the City of Falcon Heights municipal buildings and operations consumed over 151 thousand kWh of electricity and 8,238 therms of natural gas. Building energy consumption represents over 76% of GHG emissions associated with municipal operations.1 Increasing energy efficiency of municipal operations by 5% for electricity and 15% for natural gas would save as much as 7,500 kWh and 1,200 therms, eliminating 8.5 MT CO2e of GHG emissions annually.1,14 Strategy Co-Beneffts FALCON HEIGHTS CLIMATE ACTION PLAN | 2-8 BE 5- 1 Identify and assess City facilities to prioritize for electriffcation and schedule improvements. BE 5- 2 Require all new municipal buildings to be 100% electric (or zero onsite fossil fuel combustion. BE 5- 3 Conduct a City Facility Solar and Renewable Energy Master Plan study assessing on-site solar feasibility, options for achieving 100% renewable electricity including ownership options, community solar, RECs, and solar+storage microgrids. Establish an implementation timeline. (Comprehensive Plan) ACTIONS BUILDINGS AND ENERGY By expanding renewable energy and reducing fossil fuel use, the city can model sustainable, resilient energy systems. Reaching 100% municipal electric use through on-site generation and green energy purchases could cut emissions by up to 36 MT CO₂e annually.1 Switching City facilities to electric heating as the grid decarbonizes could reduce emissions by another 44 MT CO₂e each year.1 Achieve 100% municipal building renewable electricity use and "fuel switching" from on-site fossil fuel combustion to electriffcation by 2035. STRATEGY BE5: Strategy Co-Beneffts 2 -9 | FALCON HEIGHTS CLIMATE ACTION PLAN Waste management—including solid waste, recycling, and organics—plays a key role in reducing climate impacts. Landfflls emit methane, a greenhouse gas over 25 times more potent than carbon dioxide, as organic waste like food, paper, and yard trimmings decomposes without oxygen.1 Reducing landffll waste, especially organics, is critical to lowering these emissions. Waste collection also produces carbon emissions from diesel- powered trucks. Cutting waste through recycling and composting reduces collection trips and transportation emissions.2 Recycling conserves natural resources and lowers emissions from raw material extraction and manufacturing.3 Composting prevents methane emissions, enriches soil, and helps sequester carbon.4 Waste reduction is the most effective strategy, cutting emissions throughout a product’s life cycle.5 In Minnesota, waste reduction and recycling already prevent nearly 4.9 million metric tons of CO₂ annually—the equivalent of removing one million cars from the road.6 Expanding recycling, composting, and waste reduction can help Falcon Heights cut climate pollution, conserve resources, and build healthier, more sustainable systems. Solid Waste in Falcon Heights7 Total solid waste handled in 2019 was 6,598 tons. By 2023 the total was 6,160 for a 6.6% decrease. On a per-capita basis, however, the decrease in total solid waste handled is lower at 2.1%. The share of solid waste being diverted for recycling has decreased from 33% in 2019 to 31.4% in 2023. Organics diversion, however, has increased from 17.2% in 2019 to 19.9% in 2023. These numbers highlight a signiffcant opportunity to divert more waste from landfflls, especially organic materials, which generate the most greenhouse gas emissions. For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover QUICK FACTS 2.6% of community-wide GHG emissions in 2023 from solid waste 669 tons of landfllled waste in 2023 - 10.9% of all solid waste 2,330 tons of waste used for waste-to-energy in 2023 - 37.8% of all solid waste 1,224 tons of organics diversion in 2023 - 19.9% of all solid waste 52 tons of recycling diversion in 2023 - 37.8% of all solid waste Click here to return to TOC The Plan: Waste Management FALCON HEIGHTS CLIMATE ACTION PLAN | 2-10 WASTE MANAGEMENT The Minnesota Pollution Control Agency (MPCA) ranks waste management strategies by environmental impact, prioritizing reduction, reuse, recycling, and organics recovery.8 Reducing waste conserves resources, cuts emissions, and can save homes and businesses hundreds of dollars annually.9,10,11 Strengthening waste reduction policies offers a major environmental opportunity for Falcon Heights. Decrease total annual municipal solid waste generated by 10% by 2035. STRATEGY WM1: ACTIONS WM 2- 1 Promote participation in the Ramsey/Washington Recycling and Energy center's food scraps pickup program. Goal 75% household participation by 2035. WM 2- 2 Incorporate requirements into zoning standards for commercial and multi-family buildings to provide convenient organics and recycling collection, ensuring diversion is as easy as garbage disposal. WM 2- 3 Collaborate with partners to promote backyard composting by providing residents with low-cost or free compost bins and educational materials. WM 2- 4 Collaborate with partners such as Ramsey County Urban Agriculture Coordinator to establish a community compost site for residents unable or unwilling to compost at home. Increase organics and compostable diversion from 19.9% to 22% of total MSW handled by 2035. STRATEGY WM2: ACTIONS Strategy Co-Beneffts Most landffll gas arises from bacterial decomposition when organic waste breaks down by bacteria. Organic wastes include food, garden waste, street sweepings, textiles, wood, and paper products.12 The State’s 2013 Waste Characterization study shows that over 50% of Falcon Heights' landffll and waste- to-energy stream is organic material, including paper— presenting a major emissions reduction opportunity.13,14 Strategy Co-Beneffts WM 1- 1 Establish a Zero Waste policy for City operations with clear annual waste reduction targets toward achieving Zero Waste. Require external users of City facilities to comply with the Zero Waste policy, and update event permit applications to mandate recycling and composting at events. WM 1- 2 Explore waste hauling improvements to support CAP goals, including updates to the City's licensing process and the implementation of organized waste hauling strategies. WM 1- 3 Require all construction and demolition projects to submit waste management plans demonstrating their ability to meet speciffc waste diversion targets aligned with the City's CAP goals. WM 1- 4 Collaborate with partners such as Reuse MN to promote material reuse and waste reduction, including community events like swaps and garage sales. WM 1- 5 Collaborate with partners to create a comprehensive communication campaign to provide standardized information and communications on waste reduction, recycling, and organics collection options to reach the residential sector. 2 -11 | FALCON HEIGHTS CLIMATE ACTION PLAN WM 3- 1 Collaborate with partners on a comprehensive communication campaign providing standardized education and guidance on waste reduction, recycling, organics collection, hazardous waste management, and available waste diversion programs for residential and commercial sectors. WM 3- 2 Partner with Ramsey County and the Recycling Ambassador program to reduce barriers to recycling participation at multifamily and commercial properties. WM 3- 3 Through waste hauler permitting or organized waste collection processes, require or incentivize haulers to educate customers on recycling, waste reduction, and diversion. WM 3- 4 Adopt an ordinance requiring all "to-go" packaging to be recyclable, compostable, or reusable. ACTIONS Increase recycling diversion from 31.4% to 35% of total MSW handled by 2035. STRATEGY WM3: The 2013 State Waste Characterization study identiffes signiffcant potential to boost recycling, estimating that up to 48% of landfflled waste could be recycled.14 The largest opportunities lie in paper and plastics, with additional potential in metals and glass. Strategy Co-Beneffts WASTE MANAGEMENT FALCON HEIGHTS CLIMATE ACTION PLAN | 2-12 Climate change directly impacts water and wastewater systems, affecting availability, quality, and infrastructure capacity in Falcon Heights.1 Rising temperatures and shifting rainfall patterns increase water risks, requiring strategies like conservation, elficient irrigation, and drought-resistant landscaping to protect limited resources.2,3 Heavier rainfall can overload wastewater systems, causing overifows.4 Adaptive strategies include increasing wastewater facility capacity, using green infrastructure like rain gardens and bioswales to manage stormwater, and preventing contamination. Integrating climate projections into planning supports proactive adaptation and strengthens the long-term sustainability of water and wastewater systems. By prioritizing resilience, Falcon Heights can protect public health, the environment, and the local economy while ensuring safe water and reliable wastewater treatment.5 Regional Water Stress By 2025, an estimated 1.8 billion people will live in areas plagued by water scarcity, with two-thirds of the world's population living in water-stressed regions. Since 1985 the Falcon Heights area has had a reduction in water yield of approximately 10%. Through 2050, the City can anticipate an increase in water demand of 20%.6 The Plan: Water and Wastewater For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover QUICK FACTS 36% annual precipitation increase projected by 2100 27-55% heavy precipitation event increase projected by 2100 144 fiood and severe storm events in Ramsey County reported since 2000 $30,869,000 in fiood and storm damage reported by NOAA since 2000 Click here to return to TOC 2 -13 | FALCON HEIGHTS CLIMATE ACTION PLAN W 1- 1 Collaborate with regional partners, including Saint Paul Regional Water Services, Capitol Region, Rice Creek Watershed Districts, and Met Council, to help Falcon Heights' largest water users reduce consumption through an opt-in program. Offer technical resources or grants for water-elficient equipment to assist large institutions and businesses in conserving water internally. W 1- 2 Promote community-wide adoption of WaterSense ffxtures by accelerating installation in homes and expanding to commercial properties. Goal: achieve 30 households and 10 businesses upgraded annually. W 1- 3 Evaluate adopting a Lawn and Landscaping watering policy that provides clear irrigation guidelines and promotes water conservation. W 1- 4 Implement a policy requiring rainwater collection systems and WaterSense ffxtures and appliances in all City facility projects, including modeling best practices in the anticipated new park building. Encourage projects receiving City ffnancing or public funds to adopt similar practices and provide technical support as needed. W 1- 5 Partner with Ramsey County, Saint Paul Regional Water Services, and local watershed districts to establish a reduced-cost or giveaway program for rain barrels. ACTIONS W 2- 1 Incorporate anticipated increases in precipitation and extreme weather into the City's stormwater management plans, including addressing redevelopment of currently exempt properties. Collaborate with Capital Region and Rice Creek watershed districts. W 2- 2 Conduct a pavement analysis and permeable pavement conversion study, prioritizing ifood-vulnerable areas identiffed in the City's 2024 Ground Cover Study. Develop an implementation master plan and replacement schedule. W 2- 3 Explore zoning adjustments to reduce impervious surfaces citywide, emphasizing pavement removal, permeable pavement installation, ifoodplain preservation, and green stormwater infrastructure. Collaborate with Capital Region and Rice Creek watershed districts. W 2- 4 Partner with Capital Region and Rice Creek watershed districts to create or expand incentive programs encouraging rain garden installations, prioritizing areas vulnerable to stormwater impacts. ACTIONS Promote a 5% reduction in water use and wastewater generation Citywide by 2035. STRATEGY W1: Identify ifood-prone areas and develop plans to address future stormwater and climate- related impacts. STRATEGY W2: Reducing water use and wastewater is key to cutting emissions and building climate resilience. Using less water eases pressure on freshwater resources, supports ecosystems, and lowers energy demand for treatment and transport, reducing greenhouse gases. Minimizing wastewater further conserves energy and cuts emissions. Together, these actions strengthen sustainability and water security. Strategy Co-Beneffts Falcon Heights can expect as much as a 36% increase in annual precipitation and 55% more heavy downpours by 2100. 1,7,8 These trends are likely to lead to more runoff and ifash ifooding on less absorbent ground.9 Infrastructure is often based on past rainfall, but climate- ready designs must use projections from NOAA and others to account for increased precipitation and heavier storms. Strategy Co-Beneffts WATER AND WASTEWATER FALCON HEIGHTS CLIMATE ACTION PLAN | 2-14 W 3- 1 Partner with Capital Region and Rice Creek watershed districts to assess the percentage of impervious surface runoff treated by Best Management Practices (BMPs) and set a 2035 improvement goal. W 3- 2 Strengthen ordinances and enforcement to protect riparian areas, streams, and wetlands that store and fflter ifoodwaters. W 3- 3 Adopt a no-fertilizer, no-pesticide policy for all City-owned or managed properties and encourage reduced fertilizer and pesticide use by residents and businesses. W 3- 4 Collaborate with partners to educate residents on environmentally safer alternatives to road and sidewalk salt for ice control. ACTIONS Protecting aquifers, lakes, and natural water bodies is vital for climate adaptation, as they store freshwater, support ecosystems, and meet human needs.10 Climate change harms water quality through evaporation, ifooding, and contamination. Groundwater management, land use planning, and riparian restoration are key. Green infrastructure like permeable pavements and rain gardens reduces runoff and improves water quality.11 Increase groundwater, stream, river and wetland water quality protection and restoration. STRATEGY W3: Strategy Co-Beneffts WATER AND WASTEWATER 2 -15 | FALCON HEIGHTS CLIMATE ACTION PLAN Transporting food across long distances relies heavily on fossil fuels, contributing signiffcantly to greenhouse gas emissions. The extended travel time also increases the need for energy-intensive refrigeration, further adding to the environmental impact. By minimizing transportation and refrigeration, we can make our food systems more sustainable.1 Choosing locally grown food helps reduce the carbon footprint associated with our meals while also strengthening the local economy. Studies indicate that local produce markets support approximately 32 jobs per $1 million in sales, compared to just 10.5 jobs generated by wholesale distribution channels. Additionally, community gardens and neighborhood gardening provide social and environmental beneffts.2 These spaces can foster a sense of community, create opportunities for people of all ages to engage in shared activities, encourage low-impact outdoor exercise, and support biodiversity by creating habitats for plants, animals, and pollinators.3 At the same time, our food systems face increasing threats from climate change.4 Extreme weather events, rising temperatures, and changing precipitation patterns put crops and livestock at risk. Challenges range from animal heat stress to increased pest infestations and disruptions to natural cycles. These physical impacts are compounded by social and economic consequences. Food insecurity—when access to adequate nutrition is limited by factors like income or availability—disproportionately affects low- income households, who are nearly three times more likely to experience it.5 As climate change intensiffes, it is likely to deepen these existing inequities and further strain food security in many communities.6 For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover QUICK FACTS 1 community gardens within the city 0 farmers markets within the city 10.5% average food insecurity rate in Ramsey County 19.0% child food insecurity rate in Ramsey County Click here to return to TOC The Plan: Local Food and Agriculture FALCON HEIGHTS CLIMATE ACTION PLAN | 2-16 LOCAL FOOD AND AGRIC ULTURE U.S. agriculture faces regional climate risks.7 Paciffc states face less water, warmer winters, and variable springs. Extreme weather, heat, and ifooding threaten Plains and Midwest grain. Livestock in the Plains and Southeast faces weather and supply risks. Low-income and food-insecure groups will be hit hardest by the effects of these impacts. Strong local food systems boost resilience, food security, jobs, and community wealth.8,9 Enhance access to local food, especially for low- income and food-insecure individuals. STRATEGY LF1: ACTIONS FA 2- 1 Identify and map potential sites for community gardens or farms, prioritizing underserved populations and food- insecure areas. Include parks and public lands, and collaborate with partners to implement garden locations. FA 2- 2 Plant fruit and nut trees on City-owned land, boulevards, and rights-of-way. Partner with groups like Every Meal to collect and distribute the harvest. FA 2- 3 Establish a “Grow Falcon Heights” program to expand community garden plots and create a market garden that offers youth training and internships. Collaborate with local restaurants, food shelves, and organizations to distribute produce to food-insecure residents. FA 2- 4 Review policies and ordinances to support urban agriculture, including front yard and rooftop gardens, community gardens, urban farms, beekeeping, and poultry keeping Increase production of local food, particularly serving low-income and food-insecure individuals. STRATEGY LF2: ACTIONS Strategy Co-Beneffts Some Falcon Heights residents face economic stress, limited transportation, and live over ½ mile from a grocery store (see the Falcon Heights Climate Baseline Assessment).10 Others face food insecurity from lack of money, culturally appropriate foods, or resources. Improving food access reduces insecurity and strengthens climate resilience. Strategy Co-Beneffts \ 1 Collaborate with the Saint Paul–Ramsey County Food and Nutrition Commission to complete a Food Security Assessment, identify underserved areas, and develop strategies to improve food access—especially for vulnerable populations. FA 1- 2 Partner with organizations like Good Acre, the University of Minnesota, Gibbs Farm, and St. Paul Farmer’s Market to create or expand farmers market access in Falcon Heights. Pursue grant opportunities to support these efforts. FA 1- 3 Work with partners to promote subsidy programs that provide local produce at reduced prices for qualifying residents. FA 1- 4 Offer City facilities or parking lots as pickup sites for Community Supported Agriculture (CSA) programs that accept SNAP and EBT payments. 2 -17 | FALCON HEIGHTS CLIMATE ACTION PLAN FA 3- 1 Collaborate with the Saint Paul–Ramsey County Food and Nutrition Commission to complete a Food Security Assessment. Identify food-insecure areas, especially vulnerable populations, and develop strategies to improve food access in the city. FA 3- 2 Work with Ramsey County, the University of Minnesota, and the State Fair to explore creating a Food Recovery Network that improves surplus food collection and distribution from large events and facilities to food-insecure and elderly populations. FA 3- 3 Coordinate with local food banks to support edible food donations from City and community events. Expand partnerships with food retailers and restaurants, and share food bank resources on the City’s website. ACTIONS Reduce food waste and hunger, achieve a 50% decrease in food insecurity Citywide by 2035. STRATEGY LF3: Nationally, 30-40% of food is wasted.11 Falcon Heights generates about 480 tons of food waste yearly, based on the State’s 2013 Waste Study.12,13 This waste emits greenhouse gases and costs $1 million annually.14 It also wastes resources like land, water, and energy, and could have helped families in need. Reducing food waste supports sustainability and may reduce food insecurity. Strategy Co-Beneffts LOCAL FOOD AND AGRIC ULTURE FALCON HEIGHTS CLIMATE ACTION PLAN | 2-18 Trees and natural vegetation are vital to community well-being, helping improve air and water quality, lower building energy use, and support climate action efforts.1 Research also links exposure to nature, like time spent in parks, with better physical and mental health and reduced stress.2 Additionally, trees help clean the air by removing pollutants such as carbon monoxide, particulate matter, and ground-level ozone—substances that can worsen asthma and other respiratory conditions when present at high levels.3 Prairie Grass and Climate Action Switching from traditional lawns to native grasses and wildifowers strengthens climate resilience. Native plants require less water and upkeep, cutting down on irrigation, chemical fertilizers, pesticides, and emissions from lawn maintenance.4 Their deep roots enhance soil stability, improve water absorption, reduce ifooding risks, and sequester carbon. Native grasses also promote biodiversity by providing essential habitats for wildlife.5 Impervious Surfaces and Heat More pavement and buildings increase the urban heat island effect, where cities become hotter than surrounding rural areas due to heat absorption by man-made surfaces. This effect worsens extreme heat events, raising health risks and discomfort. Research shows that areas with more impervious surfaces and fewer trees experience signiffcantly higher temperatures.6 The Plan: Greenspace and Ecosystems For More Information (click icon): Vulnerability GHG Inventory Renewable Ground Cover QUICK FACTS 22.5% average tree canopy coverage citywide 38.7% average impervious surface coverage citywide 27.8% manicured lawn coverage citywide 7.7 °F Falcon Heights is hotter than nearby rural areas on hot days. Click here to return to TOC 2 -19 | FALCON HEIGHTS CLIMATE ACTION PLAN GE 1- 1 Adopt a No Net Loss policy requiring every removed public street or space tree to be replaced with a seedling or sapling. If replanting on-site isn’t feasible, plant in a nearby space or the City’s designated tree bank. GE 1- 2 Partner to create or expand an annual tree giveaway or discount program for residents. Example: grow and distribute 400 seedlings or saplings each year. GE 1- 3 Update the City’s Landscape Ordinance to require minimum tree and native/pollinator planting coverage based on lawn or impervious surface area. Require planting islands in parking lots for new or expanded developments. Promote native tree, shrub, and pollinator-friendly groundcover diversity. GE 1- 4 Collaborate with partners to share educational resources on climate-adaptive trees, promotion of tree and plant diversity, carbon gardening, tree care, and other sustainable greenspace practices such as reducing fertilizer use, biochar amendments, and polyculture lawns. Post resources on the City website. ACTIONS GE 2- 1 Complete a Land Conversion Opportunity Study to identify turf and impervious areas suitable for conversion to native grasslands, wetlands, shrubs, or forests. Develop an implementation plan by census tract, explore incentives, and launch outreach to promote turf conversion. GE 2- 2 Establish a policy for City properties to reduce impervious surfaces and enhance natural diversity by incorporating pavement reduction, permeable pavement, green roofs, and replacing turf with native wildifowers and prairie grasses to support pollinators. GE 2- 3 Collaborate with partners like the University of Minnesota Bee Lab and Capital Region Watershed District to develop and share resources on selecting appropriate native and pollinator-friendly plants. GE 2- 4 Partner with the University of Minnesota Master Gardeners to create a greenspace ambassador and education program. ACTIONS Increase tree cover, particularly in the priority neighborhoods, from 22.5% to 25% by 2035. STRATEGY GE1: Enhance pollinator habitats and replace 15% of turf with native grasses and wildifowers citywide by 2035. STRATEGY GE2: Our tree canopy reduces runoff, cleans water, cools urban heat islands, lowers building energy use, stores carbon, and supports economic growth.7,8,9 Expanding canopy coverage boosts climate adaptation.10,11 Prioritizing tree canopy expansion enhances equity, beneffts more households, and reduces heat island effects. Suggested neighborhood increases and criteria are outlined in the City’s 2024 Ground Cover Study. Strategy Co-Beneffts Replacing lawns with native grasses and wildifowers creates a natural landscape and helps address climate change. Native plants support wildlife, improve water quality, reduce air pollution, protect biodiversity, and increase carbon sequestration.12,13,14 In Falcon Heights, 99% of grasslands are lawns, presenting turf reduction opportunities. Replacing turf boosts stormwater uptake, reduces water use, and increases soil carbon.15,16,17 Areas with more grass have the greatest potential for native plant restoration.18 Strategy Co-Beneffts GREENSPACE AND ECOSY STEMS FALCON HEIGHTS CLIMATE ACTION PLAN | 2-20 GE 3- 1 Collaborate with partners to create an incentive program supporting the conversion of underutilized paved and turf areas into sustainable green spaces, following the City’s Land Conversion Opportunity Study. GE 3- 2 Require commercial developments receiving City funding, PUD approval, or Conditional Use Permits to implement heat island reduction strategies, including cool surfaces, solar- friendly shading, impervious surface reduction, and breeze capture. GE 3- 3 Collaborate with partners to develop and promote best practices for reducing heat island effects on commercial properties. GE 3- 4 Collaborate with partners to create a cool roofs and pavements incentive program and develop a Falcon Heights demonstration project featuring a cool roof, green roof, green/live wall, or vertical garden. ACTIONS The heat island effect causes urban areas to be warmer than nearby rural regions due to human activities and infrastructure. This increases discomfort and health risks, especially during heat waves, which are expected to grow more frequent and intense in Falcon Heights.19,20 Dark-colored impervious surfaces contribute signiffcantly to this effect.21 Reducing these surfaces can help lessen heat island impacts. Reduce heat island effect by decreasing dark impervious surfaces 10% citywide by 2035, prioritizing high-impact neighborhoods. STRATEGY GE3: Strategy Co-Beneffts GREENSPACE AND ECOSY STEMS 3 -1 | FALCON HEIGHTS CLIMATE ACTION PLAN The initial years following the adoption of the Falcon Heights Climate Action Plan (CAP) are crucial for setting a successful trajectory. Clarifying roles and securing funding early will be essential to achieving ambitious greenhouse gas reduction and climate resilience goals. Everyone Has a Role Climate change affects many aspects of community life, requiring a comprehensive response. Some actions will be led directly by Falcon Heights’s elected olficials, city leadership, or municipal departments. Other efforts will depend on local government support and active participation from residents, families, and businesses. Building a resilient future demands commitment from both city olficials and the entire community. Climate Action is a Continuous Process Implementing a multi-year plan comes with uncertainties, especially regarding future technologies and opportunities. To accommodate this, the CAP will follow annual or biennial implementation cycles. Each cycle will identify and prioritize actions across sectors for the upcoming period, ensuring alignment with city initiatives, current projects, and budget planning. Actions will be ifexible and adaptable, with reffnements made as implementation progresses. Policy changes, new ordinances, or city -funded initiatives will require City Council approval. The City will prioritize CAP implementation through collaboration among city departments, the Environment Commission, and community stakeholders. This approach ensures integration of climate actions into annual planning and budgeting processes, promoting consistency with broader city efforts. Click here to return to TOC QUICK FACTS 6 Climate Action Plan Sectors 23 strategies to achieve GHG reduction and climate resilience goals 92 detailed actions outlining a menu of steps that can be taken to support strategies 10 Year implementation timeframe Implementation FALCON HEIGHTS CLIMATE ACTION PLAN | 3-2 Implementation Support Tools To aid the City’s initial implementation, the paleBLUEdot team has developed supportive tools: Implementation Matrix: Excel tool for action implementation and monitoring. Example Programs, Policies and Ordinances Example programs, policies, and ordinances supporting the City’s Climate Action Plan strategies: https://palebluedot.llc/falcon- heights-cap-policies Example Policy Alignment Memo For use in reviewing policy items against Climate Action Plan goals: Plan Alignment Statement Memo Falcon Heights.pdf CP 1- 1 Create a City "CAP Implementation Team" with staff from key departments to meet quarterly, prioritize and track pro- gress, and develop two-year work plans outlining tasks, timelines, resources, and stalfing needs. The team will pro- vide annual progress updates to the Environment Commis- sion and City Council. CP 1- 2 Form a Falcon Heights Climate Action Collaboration Team with members from local government, nonproffts, communi- ty groups, and residents. The team will meet regularly to co- ordinate CAP implementation, pursue joint initiatives, share lessons, support cross-jurisdictional projects, and identify funding opportunities. CP 1- 3 Create a process to review city policies and plans for con- sistency with the Climate Action Plan. CP 1- 4 Implement a cohesive annual communication and educa- tion campaign that addresses the communication and edu- cational needs of each CAP section. Enhance the City's En- ergy Action Hub to disseminate CAP resources and foster community action. CP 1- 5 Regularly evaluate CAP progress and impacts (every 1-2 years), including updated community-wide and municipal GHG inventories. Review strategies for effectiveness and relevance, adjusting actions as necessary. Organizational Actions The following actions outline steps the City can take to organize the implementation of the climate action plan: 4 -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Transportation and Land Use • Keep vehicles tuned and tires properly inifated. • Limit idling to 30 seconds, even in winter. • Walk or bike instead of driving short distances. • Use public transit regularly for commuting or errands. Plan your trip here. • Telecommute or carpool to reduce driving. • Fly less; vacation locally or use remote meetings. • Consider becoming a one-car household. Explore how to make the change here • Choose an electric or hybrid vehicle for your next car. Search models available here. What You Can Do Buildings and Energy • Switch all home lighting to energy-elficient LED bulbs. • Adjust your thermostat slightly higher in summer, lower in winter. • Check out State of Minnesota’s energy savings tips for summer and winter • Get a home energy audit to identify elficiency improvements. • Weatherize your home by sealing drafts and adding insulation. • Replace older appliances with ENERGY STAR® elficient models. • Take advantage of incentives from Xcel, the State of Minnesota, and the US Government. • Replace gas appliances with elficient electric alternatives. • Install rooftop solar or subscribe to renewable electricity through Xcel or a community solar garden. Waste Management • Follow Ramsey County recycling guidelines. • Purchase durable, reusable products to reduce waste. • Choose reusable bags, bottles, and containers to avoid single-use plastics. • Repair items instead of discarding; donate or sell usable goods. • Buy second-hand or borrow items rather than purchasing new. • Plan meals carefully and shop to reduce food waste. • Dispose of hazardous waste like batteries and electronics at proper facilities. • Participate in Ramsey County food scraps program to easily divert scraps from the landffll. • Participate in Ramsey County’s yard waste drop off program. Our success in building a sustainable and resilient future depends on all of us. The City has initiated this planning effort, but now we need everyone's involvement to keep the momentum going. Here are some simple steps you can start taking today! Click here to return to TOC FALCON HEIGHTS CLIMATE ACTION PLAN | 4-2 Water and Wastewater • Reduce indoor water use by shortening showers and turning off faucets promptly. See other tips here. • Repair leaks immediately to avoid unnecessary water loss. • Keep gutters and storm drains clear to keep your home storm ready. Check out other rain-ready tips here. • Use rain barrels to collect rainwater for gardening or lawn care. • Water lawns and gardens infrequently and only during cool parts of the day. • Install WaterSense water efficient ffxtures like low-ifow toilets, faucets, and showerheads. • Install a rain garden to absorb stormwater runoff and reduce ifooding. • Understand your home’s ifood risk and have a preparedness plan. Local Food and Agriculture • Plan meals to use groceries fully and minimize waste. • Incorporate more plant- based meals into your diet. • Choose seasonal foods grown locally to reduce transport emissions. • Select ethically-produced climate-friendly items, such as fair-trade coffee or chocolate. • Support restaurants and stores selling locally-grown food products. • Purchase food directly from local farmers through markets or CSA programs. • Start a small garden at home to grow fruits, vegetables, or herbs. • Join or start a community garden if space at home is limited. • Plant fruit or nut trees and shrubs suitable for Minnesota’s climate. Greenspace and Ecosystems • Avoid chemical pesticides and herbicides; use natural yard-care methods. • Volunteer locally to assist with tree plantings or gardens. • Create a pollinator-friendly garden with native plants and wildifowers. • Reduce lawn size by planting drought-tolerant grasses and native species. Apply for funding to help. • Plant and care for trees to provide shade and absorb carbon emissions. • Design your yard to support local wildlife habitats. • Replace unnecessary pavement with permeable surfaces or greenery. • Consider installing a green roof to manage stormwater and reduce heat. The following are sources and additional references used in the Climate Action Plan. Appendix A References A -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Click here to return to TOC City of Falcon Heights Climate Action Plan References Introduction 1 Estimating the Health-Related Costs of 10 Climate-Sensitive US Events During 2012: https://www.nrdc.org/resources/bitter-pill- high-health-costs-climate-change 2 Stop Climate Change, Save Lives: https://www.nrdc.org/stop-climate-change- save-lives 3 World Health Organization Building Capacity on Climate Change for Human Health Toolkit: https://www.who.int/activities/building- capacity-on-climate-change-human- health/toolkit/cobenefits 4 United Nations Economic Commission for Europe: https://unece.org/DAM/Sustainable_Develop ment_No._2__Final__Draft_OK_2.pdf 5 Bollen, J. et al. (2009), Co-benefits of Climate Change Mitigation Policies: Literature Review and New Results, https://www.oecd-ilibrary.org/economics/co- benefits-of-climate-change-mitigation- policies_224388684356 6 City of Falcon Heights Community GHG Inventory, 2024; https://view.publitas.com/palebluedot/falcon -heights-ghg-inventory/ 7 City of Falcon Heights Climate Vulnerability Assessment: https://view.publitas.com/palebluedot/falcon -heights-climate-vulnerability-assessment/ 8 i Parry, I, Veungh, C. and Heine, D. (2014), How Much Carbon Pricing is Countries’ Own Interests? The Critical Role of Co-Benefits; https://www.imf.org/external/pubs/ft/wp/20 14/wp14174.pdf 9 UNC Gillings School of Global Public Health, “Reducing greenhouse gases benefits air quality, saves lives”; https://sph.unc.edu/sph- news/reducing-greenhouse-gases-benefits- air-quality-saves-lives/ 10 Mapping the co-benefits of climate change action to issues of public concern in the UK: a narrative review: https://www.thelancet.com/journals/lanplh/a rticle/PIIS2542-5196(20)30167-4/fulltext 11 Union of Concerned Scientists, Top 10 Benefits of Climate Action: https://www.ucsusa.org/resources/top-10- benefits-climate-action 12 Based on existing average economic value per acre of tree canopy cover. City of Falcon Heights Ground Cover, Heat Island, and Carbon Sequestration Study: https://view.publitas.com/palebluedot/falcon -heights-ground-cover-heat-island-and- carbon-sequestration-study/ 13 City of Falcon Heights, Climate Action Plan Community Survey; https://view.publitas.com/palebluedot/falcon -heights-community-survey-report/ 14 US EPA, “What Climate Change Means for Minnesota”; https://19january2017snapshot.epa.gov/sites /production/files/2016- 09/documents/climate-change-mn.pdf 15 State of Minnesota, Interagency Climate Adaptation Team, Building Resiliency to Extreme Precipitation in Minnesota; https://bwsr.state.mn.us/sites/default/files/2 018- 12/Building_Resiliency_to_Extreme_Precipitati on_in_Minnesota- ICAT_White_Paper%20%282%29.pdf 16 NASA, Global Temperature (Global Avg Temperature); https://climate.nasa.gov/vital- signs/global-temperature/?intent=121 City of Falcon Heights Climate Action Plan References 17 US Climate Resilience Toolkit Climate Explorer: https://toolkit.climate.gov/tool/climate- explorer-0 18 U.S. Global Change Research Program, Climate Science Special Report: https://science2017.globalchange.gov/ 19 US National Oceanic and Atmospheric Administration, National Centers For Environmental Information, Climate Data Online: https://www.ncdc.noaa.gov/cdo-web/ 20 Projections assume global greenhouse gas emissions are not reduced in line with the recommendations of the International Panel on Climate Change. Reductions in greenhouse gas emissions can positively effect the projected climate impacts, particularly in the second half of the century. Projections use climate model RCP 8.5 which is recommended by Woodshole Research Center and others as the best match through mid-century under current and stated policies with still highly plausible through 2100. “RCP8.5 tracks cumulative CO2 emissions” Christopher R. Schwalm University of California, Los Angeles: https://www.pnas.org/doi/full/10.1073/pnas. 2007117117#data-availability 21 Unless noted otherwise, projections are based on U.S. Climate Resilience Toolkit CLIMATE EXPLORER, NOAA: https://crt- climate-explorer.nemac.org/ 22 Assumes 60% of decrease of days <32° F occur during frost-free season with balance occurring during winter months. All numbers are shown as change over baseline column. 23 University of Minnesota, Changing Seasons: https://climate.umn.edu/our- changing-climate/changing-seasons 24 Argonne National Laboratory, Center for Climate Resilience and Decision Science: https://disgeoportal.egs.anl.gov/ClimRR/ 25 Increases are due to increased air conditioning needs. Calculations are based on US Environmental Protection Agency's "Climate Change Indicators: Residential Energy Use": https://www.epa.gov/climate- indicators/climate-change-indicators- residential-energy-use and an estimated average of 16.9% of total residential electric use for air conditioning based on US Energy Information Administration "Use of energy explained": https://www.eia.gov/energyexplained/use-of- energy/electricity-use-in-homes.php 26 University of Minnesota Climate Adaptation Partnership; https://climate.umn.edu/our-changing- climate/extreme-events 27 State of Minnesota MPCA, Climate Change Impacts; https://www.pca.state.mn.us/air-water-land- climate/climate-change-impacts The Plan - Transportation 1 US Energy Information Administration, International Energy Outlook 2016 https://www.eia.gov/outlooks/ieo/pdf/transp ortation.pdf 2 City of Falcon Heights Community GHG Inventory, 2024; https://view.publitas.com/palebluedot/falcon -heights-ghg-inventory/ 3 The Influence of Urban Form on GHG Emissions in the U.S. Household Sector (Lee, S., and Lee, B. 2014 ) https://www.researchgate.net/publication/27 0952371_The_influence_of_urban_form_on_G HG_emissions_in_the_US_household_sector 4 National Academies, “Transportation’s Role in Equity and Justice: Restoring and Revitalizing Neighborhoods and Communities”: https://www.nationalacademies.org/news/20 21/07/transportations-role-in-equity-and- City of Falcon Heights Climate Action Plan References justice-restoring-and-revitalizing- neighborhoods-and-communities 5 City of Falcon Heights Climate Action Baseline Assessment and Strategic Goal Recommendations, 2024: https://view.publitas.com/palebluedot/city- of-falcon-heights-climate-action-baseline- assessment/ 6 US Census accessed via Deloitte Data USA: https://datausa.io/profile/geo/Falcon Heights-mn 7 US Census, On The Map: https://onthemap.ces.census.gov/ 8 AAA “Your Driving Costs, 2023”: https://newsroom.aaa.com/wp- content/uploads/2023/08/YDC-Fact-Sheet- FINAL-8.30.23-1.pdf 9 Social Explorer Tables (SE), Environmental Summaries 2011, Social Explorer; National Historical Geographic Information System (NHGIS) 10 US Census https://data.census.gov/ 11 TRB Special Report 298: Driving and the Built Environment: Effects of Compact Development on Motorized Travel, Energy Use, and CO2 Emissions Impacts of Land Use Patterns on Vehicle Miles Traveled Evidence from the Literature https://www.nap.edu/read/12747/chapter/5# 88 12 New York Times, “E.V.s Start With a Bigger Carbon Footprint. But That Doesn’t Last”; https://www.nytimes.com/2022/10/19/busin ess/electric-vehicles-carbon-footprint- batteries.html 13 EV HUB: https://www.atlasevhub.com/materials/state -ev-registration-data/ 14 US EPA, Automotive Trends Report, 2023; https://www.epa.gov/system/files/document s/2023-12/420r23033.pdf 15 US Department of Transportation, Electric Vehicle Charging Infrastructure; https://www.transportation.gov/sites/dot.gov /files/2024- 12/EV%20Charging%20Infrastructure%20- %20Climate%20Strategies%20that%20Work.p df 16 US Department of Energy, Alternative Fuel Data Center, Electric Vehicle Benefits and Considerations; https://afdc.energy.gov/fuels/electricity- benefits 17 US Energy Information Administration, Carbon Dioxide Emissions Coefficients: https://www.eia.gov/environment/emissions /co2_vol_mass.php The Plan – Buildings and Energy 1 City of Falcon Heights Community GHG Inventory, 2024; https://view.publitas.com/palebluedot/falcon -heights-ghg-inventory/ 2 US Department of Energy, Residential Program Solution Center: https://rpsc.energy.gov/energy-data-facts 3 City of Falcon Heights, residential and non- residential construction permit history, 2021, 2022, and 2023. 4 Social Explorer, Market Profile Data 2022 based on US Census American Census Survey; https://www.socialexplorer.com/data/EASI20 25/documentation/7933fdf1-4c9b-4cb2- ad82-5a8e949ac78f 5 US Census Bureau ACS 5 year estimates; https://data.census.gov/table/ 6 State of Minnesota House of Representatives, “State establishes standard of 100% carbon-free electricity by 2040” https://www.house.mn.gov/NewLaws/story/ 2023/5473 7 City of Falcon Heights Climate Action City of Falcon Heights Climate Action Plan References Baseline Assessment and Strategic Goal Recommendations, 2024: https://view.publitas.com/palebluedot/city- of-falcon-heights-climate-action-baseline- assessment/ 8 US Department of Energy, Benefits of Residential Solar Electricity: https://www.energy.gov/energysaver/benefit s-residential-solar-electricity 9 ACEEE Understanding Energy Affordability: https://www.aceee.org/sites/default/files/en ergy-affordability.pdf 10 City of Falcon Heights Renewable Energy Potentials Study, 2024: https://view.publitas.com/palebluedot/falcon -heights-renewable-potentials-study/ 11 Xcel Energy, Renewable Energy Opportunities: https://mn.my.xcelenergy.com/s/renewable 12 Dakota Electric Association, Renewable Energy: https://www.dakotaelectric.com/renewable- energy/ 13 US Department of Energy, Renewable Energy Certificates: https://www.epa.gov/green-power- markets/renewable-energy-certificates-recs 14 Savings calculated on Falcon Heights average commercial electricity rate as reported by Electricity Local (https://www.electricitylocal.com/) and Natural Gas Local (https://naturalgaslocal.com/) The Plan – Waste Management 1 US EPA, Understanding Global Warming Potentials; https://www.epa.gov/ghgemissions/understa nding-global-warming-potentials 2 Northwestern Global News, How cities can cut transportation emissions. New Northeastern research reveals key strategies; https://news.northeastern.edu/2025/03/19/c limate-plan-city-research/ 3 Lawrence University, The Impact of Recycling on Environmental Sustainability; https://blogs.lawrence.edu/careercenter/202 4/10/the-impact-of-recycling-on- environmental-sustainability.html 4 US EPA National Recycling Strategy: https://www.epa.gov/circulareconomy/natio nal-recycling-strategy 5 MPCA, Waste planning and recycling: https://www.pca.state.mn.us/air-water-land- climate/waste-planning-and-recycling 6 MPCA, Understanding Solid Waste; https://www.pca.state.mn.us/air-water-land- climate/understanding-solid-waste 7 City of Falcon Heights Community GHG Inventory, 2024; https://view.publitas.com/palebluedot/falcon -heights-ghg-inventory/ 8 MPCA Waste Planning and Recycling; https://www.pca.state.mn.us/air-water-land- climate/waste-planning-and-recycling 9 Minnesota Chamber of Commerce, WasteWise program: https://www.mnchamber.com/sites/default/f iles/Waste%20Wise%20Annual%20Report.pdf 10 North Carolina State University Extension, How Your Business Can Cut Costs by Reducing Waste: https://content.ces.ncsu.edu/how-your- business-can-cut-costs-by-reducing-wastes 11 ReFed, A Roadmap To Reduce US Food Waste by 20 Percent: https://www.refed.com/downloads/ReFED_R eport_2016.pdf 12 Agency for Toxic Substances and Disease Registry: https://www.atsdr.cdc.gov/hac/landfill/html/ ch2.html 13 City of Falcon Heights Climate Action Baseline Assessment and Strategic Goal City of Falcon Heights Climate Action Plan References Recommendations, 2024: https://view.publitas.com/palebluedot/city- of-falcon-heights-climate-action-baseline- assessment/ 14 State of Minnesota, 2013 Statewide Waste Characterization; https://www.pca.state.mn.us/sites/default/fil es/w-sw1-60.pdf The Plan – Water and Wastewater 1 City of Falcon Heights Climate Vulnerability Assessment: https://view.publitas.com/palebluedot/falcon -heights-climate-vulnerability-assessment/ 2 Center for Climate and Energy Solutions, “Resilience Strategies for Drought”; https://www.c2es.org/wp- content/uploads/2018/10/resilience- strategies-for-drought.pdf 3 Aspen Public Radio, “How Landscaping Plays a Key Role in The Fight Against Climate Change“; https://www.aspenpublicradio.org/2023-10- 17/how-landscaping-plays-a-key-role-in-the- fight-against-climate-change 4 Climate Central, “Overflow: Climate Change, Heavy Rain, And Sewage“; https://assets.climatecentral.org/pdfs/Overfl ow_sewagereport_update.pdf 5 Johnson T, Butcher J, Santell S, Schwartz S, Julius S, LeDuc S. A review of climate change effects on practices for mitigating water quality impacts. J Water Clim Chang. 2022 Mar 22; https://doi.org/10.2166%2Fwcc.2022.363 6 City of Falcon Heights Climate Action Baseline Assessment and Strategic Goal Recommendations, 2024: https://view.publitas.com/palebluedot/city- of-falcon-heights-climate-action-baseline- assessment/ 7 Argonne National Laboratory, Center for Climate Resilience and Decision Science, https://disgeoportal.egs.anl.gov/ClimRR/ 8 Defined as Days Per Year with > 1" Rainfall, U.S. Climate Resilience Toolkit CLIMATE EXPLORER, NOAA; https://crt-climate- explorer.nemac.org/ 9 WUFT, “Why the risk for flash flooding increases after a drought”; https://www.wuft.org/weather/2022-08- 12/why-the-risk-for-flash-flooding-increases- after-a-drought 10 American Public Health Association, “Climate Changes Health: Water Quality and Accessibility”;https://www.apha.org/topics- and-issues/climate-health-and-equity/water- quality 11 US EPA, National Menu Best Management Practices: https://www.epa.gov/npdes/national-menu- best-management-practices-bmps- stormwater The Plan – Local Food and Agriculture 1 H. Nabipour Afrouzi, J. Ahmed, B. Mobin Siddique, N. Khairuddin, Ateeb Hassan, A comprehensive review on carbon footprint of regular diet and ways to improving lowered emissions, Results in Engineering, Volume 18, 2023; https://doi.org/10.1016/j.rineng.2023.101054 2 Conner, David & Knudson, William & Hamm, Michael & Peterson, H.. (2008). The Food System as an Economic Driver: Strategies and Applications for Michigan. https://www.researchgate.net/publication/24 7521128_The_Food_System_as_an_Economi c_Driver_Strategies_and_Applications_for_Mic higan 3 North Carolina State Extension, Research & Benefits of Community Gardens: City of Falcon Heights Climate Action Plan References https://nccommunitygardens.ces.ncsu.edu/r esources-3/nccommunitygardens-research/ 4 USDA Climate Indicators for Agriculture: https://www.usda.gov/sites/default/files/doc uments/climate_indicators_for_agriculture.pd f 5 US Department of Health, Office of Disease Prevention and Health Promotion: https://www.healthypeople.gov/2020/topics- objectives/topic/social-determinants- health/interventions-resources/food- insecurity 6 US Global Change Research Program, Fifth National Climate Assessment, Agriculture, Food Systems, and Rural Communities Chapter; https://nca2023.globalchange.gov/chapter/1 1/ 7 Lengnick, Laura. (2015). The vulnerability of the US food system to climate change. Journal of Environmental Studies and Sciences. https://www.researchgate.net/publication/28 2499666_The_vulnerability_of_the_US_food_s ystem_to_climate_change 8 Cleveland Foundation, ParkWorks, Kent State University Cleveland Urban Design Collaborative, Neighborhood Progress Inc., Cleveland-Cuyahoga County Food Policy Coalition: https://docs.google.com/viewerng/viewer?url =https://community- wealth.org/sites/clone.community- wealth.org/files/downloads/report-masi-et- al.pdf 9 American Planning Association, Local Food Systems Key to Healthy, Resilient, Equitable Communities: https://www.planning.org/planning/2021/win ter/local-food-systems-key-to-healthy- resilient-equitable-communities/ 10 USDA Food Access Research Atlas; https://www.ers.usda.gov/data- products/food-access-research-atlas/ 11 USDA, Why Should You Care About Food Waste: https://www.usda.gov/foodlossandwaste/wh y 12 State of Minnesota, 2013 Statewide Waste Characterization; https://www.pca.state.mn.us/sites/default/fil es/w-sw1-60.pdf 13 City of Falcon Heights Community GHG Inventory, 2024; https://view.publitas.com/palebluedot/falcon -heights-ghg-inventory/ 14 ReFed, A Roadmap To Reduce US Food Waste by 20 Percent: https://www.refed.com/downloads/ReFED_R eport_2016.pdf The Plan – Greenspace and Trees 1 US EPA, Using Trees and Vegetation to Reduce Heat Islands; https://www.epa.gov/heatislands/using- trees-and-vegetation-reduce-heat-islands 2 Dahlia Stott, et al, Interactions with Nature, Good for the Mind and Body: A Narrative Review, Int J Environ Res Public Health. 2024 Mar; 21(3): 329. Published online 2024 Mar 12; https://www.mdpi.com/1660- 4601/21/3/329 3 US EPA, Throwing Shade Exploring Benefits of Trees; https://www.epa.gov/sciencematters/throwi ng-shade-exploring-benefits-trees 4 US EPA, Landscaping with Native Plants; https://archive.epa.gov/greenacres/web/html /conf_knwldge.html 5 Audubon, Why Native Plants Matter; City of Falcon Heights Climate Action Plan References https://www.audubon.org/content/why- native-plants-matter 6 Comparison of impervious surface area and normalized difference vegetation index as indicators of surface urban heat island effects in Landsat imagery. Fi Yuan and Marvin Bauer, February 2007: https://rs.umn.edu/sites/rs.umn.edu/files/Ur ban_heat_island--Impervious__RSE_paper.pdf 7 Francisco J. Escobedo, Timm Kroeger, John E. Wagner, Urban forests and pollution mitigation: Analyzing ecosystem services and disservices, Environmental Pollution, Volume 159, Issues 8–9, 2011: https://www.sciencedirect.com/science/artic le/abs/pii/S0269749111000327 8 T Elmqvist, H Setälä, SN Handel, S van der Ploeg, J Aronson, JN Blignaut, E Gómez- Baggethun, DJ Nowak, J Kronenberg, R de Groot, Benefits of restoring ecosystem services in urban areas, Current Opinion in Environmental Sustainability, Volume 14, 2015: https://www.sciencedirect.com/science/artic le/pii/S1877343515000433 9 USDA Forest Service, Carbon Storage and Sequestration by Urban Trees in the USA: https://www.nrs.fs.fed.us/pubs/5521 10 US EPA, Using Trees and Vegetation to Reduce Heat Islands: https://www.epa.gov/heatislands/using- trees-and-vegetation-reduce-heat-islands 11 USDA Forest Service, Trees Reduce Building Energy Use in US Cities: https://www.nrs.fs.fed.us/news/release/tree s-reduces-building-energy-use 12 US EPA, Green Landscaping: Greenacres, a Source Book on Natural Landscaping for Public Officials: https://archive.epa.gov/greenacres/web/html /chap2.html 13 Fight Climate Change at Home: Landscaping with Native Grasses, Lindsay Ifill: https://www.wildrootsnj.com/ecological- landscaping-with-native-grasses-climate- change/ 14 Tallgrass Ontario: Tallgrass Prairie and Carbon Sequestration: https://tallgrassontario.org/wp-site/carbon- sequestration/ 15 University of Minnesota, “The Potential of Turfgrass to Sequester Carbon and Offset Greenhouse Gas Emissions”; https://turf.umn.edu/news/potential- turfgrass-sequester-carbon-and-offset- greenhouse-gas-emissions 16 Resource Central, Unearth the Turf: Outdoor Water Savings; https://resourcecentral.org/unearth-the-turf- outdoor-water-savings/ 17 US EPA, Know Your Roots; https://cfpub.epa.gov/npstbx/files/KSMO_Kn owYourRoots.pdf 18 City of Falcon Heights Ground Cover, Heat Island, and Carbon Sequestration Study: https://view.publitas.com/palebluedot/falcon -heights-ground-cover-heat-island-and- carbon-sequestration-study/ 19 US EPA, Climate Change and Heat Islands: https://www.epa.gov/heatislands/climate- change-and-heat-islands 20 City of Falcon Heights Climate Vulnerability Assessment: https://view.publitas.com/palebluedot/falcon -heights-climate-vulnerability-assessment/ 21 Comparison of impervious surface area and normalized difference vegetation index as indicators of surface urban heat island effects in Landsat imagery. Fi Yuan and Marvin Bauer, February 2007: https://rs.umn.edu/sites/rs.umn.edu/files/Ur ban_heat_island--Impervious__RSE_paper.pdf The following documents the calculations and source references used for estimating the potential cumulative communitywide cost savings of the actions included in the Climate Action Plan. Click here to return to TOC Appendix B Potential Cumulative Community Cost Savings From Plan Implementation B -1 | FALCON HEIGHTS CLIMATE ACTION PLAN Summary of Estimated Cumulative Savings of Modeled Reductions City of Falcon Heights Notes Transportation VMT Reductions (public transit, bike, walk, etc) Formula: Cumulative vehicle miles saved x Average vehicle operation cost per mile = Gross VMT savings VMT saved (goal year)1,366,663 Cumulative vehicle miles saved (through goal year):8,199,979 1 Average vehicle operating cost per mile:$0.820 Gross VMT savings $8,199,979 Increased Public Transit Use Formula: Cumulative increased public transit mileage x Average public transit cost per mile = Increased spending on public transit Increased public transit miles (goal year)1,093,331 Cumulative increased public transit miles (through goal year):6,559,983 2 Annual increased public transit pass costs (goal year):-$230,208 Cumulative increased public transit pass costs (through goal year):-$1,381,248 Increased spending on public transit -$1,381,248 EV and Alt Fuel Conversions Formula: VMT converted to EV/Alt fuel (goal year)1,366,663 Cumulative VMT converted to EV/alt fuel (through goal year)8,199,979 3 Average fuel savings per mile:$0.121 4 Average vehicle maintenance savings per mile:$0.040 Cumulative Gross EV VMT savings (through goal year)$1,317,255 5 Spending difference per vehicle on EV purchase vs ICE purchase -$277 New electric vehicle purchases 470 Gross EV purchase spending difference (through goal year)-$130,216 Net EV VMT savings $1,187,038 Cumulative VMT converted to EV/alt fuel x Average vehicle operation cost savings per mile = Gross EV VMT savings - Gross EV purchase spending difference = Net EV VMT Savings 1 Savings per VMT based on AAA estimates https://newsroom.aaa.com/wp-content/uploads/2023/08/YDC-Fact-Sheet-FINAL- 8.30.23-1.pdf , https://www.slashgear.com/aaa-says-it-costs-about-74-cents-per-mile-to-drive-23496316/ https://www.thesimpledollar.com/save-money/is-it-really-cheaper-to-ride-the-bus/ 2 Annual increased public transit pass costs calculated based on increased percentage of population using public transit (target increased public transit percentage) multiplied by cost of monthly transit pass. Negative numbers indicate increased consumer spending. https://www.census.gov/programs-surveys/sis/resources/data-tools/quickfacts.html https://www.metrotransit.org/fares-passes#:~:text=You%20can%20buy%20Go%2DTo,to%20a%20Go%2DTo%20Card 3 Fuel Savings per VMT based on average reported gasoline costs (https://gasprices.aaa.com/state-gas-price-averages/) divided by current average MPG (Federal Highway Administration: https://www.fhwa.dot.gov/policyinformation/quickfinddata/qftravel.cfm) compared against average fuel cost per mile using current kWh rate (https://www.electricitylocal.com/ ) and average kWh/100 mile data (https://www.fueleconomy.gov/feg/byfuel/EV2024.shtml ; https://ev-database.org/cheatsheet/energy-consumption-electric- car') 4 Maintenance savings per mile based on US Department of Energy FOTW #1190, June 14, 2021: Battery-Electric Vehicles Have Lower Scheduled Maintenance Costs than Other Light-Duty Vehicles: https://www.energy.gov/eere/vehicles/articles/fotw-1190-june-14-2021-battery-electric-vehicles-have-lower-scheduled Potential Total Cumulative Transportation Cost Savings Formula: Transportation sector savings - Transportation sector cost increases = Potentail Total Cumulative Transportation Cost Savigns Transportation Sector Savings Gross VMT savings $8,199,979 Gross EV VMT savings $1,317,255 Total Gross Transportation Savings $9,517,233 Transportation Sector Cost Increases Increased spending on public transit -$1,381,248 Gross EV purchase spending difference -$130,216 Total Gross Transportation Cost Increases -$1,511,464 Potentail Total Cumulative Transportation Cost Savings $8,005,769 5 Average EV purchase price increse per vehicle on Kelly Blue Book average EV purchase price compared to average gasoline vehicle purchase price (https://www.kbb.com/car-advice/electric-car-faqs/ ) with an average of $3,750 in tax credits appied (tax credits are available up to $7,500 for qualifying vehicles) Total cost difference is then divided by an assumed 5 year financing term to arrive at an estimated annualized cost difference. Negative numbers indicate increased consumer spending https://www.nerdwallet.com/article/taxes/ev-tax-credit-electric-vehicle-tax-credit Summary of Estimated Cumulative Savings of Modeled Reductions City of Falcon Heights Notes Energy - Residential Residential Savings - grid electricity to customer owned solar Formula: Cumulative kWh converted to solar x Average cost savings per kWh = Residential solar savings Residential kWh converted (goal year)1,166,795 Cumulative residential kWh converted (through goal year)7,000,768 Average net solar cost savings per solar kWh $0.058 6a Average solar installation cost per KW $3,116.50 7 Average kWh produced annually per solar pv KW installed 1,287 Estimated installed solar PV KW installed (goal year) 907 Estimated total solar installation costs $2,825,420 8 Est average lifespan kWh produced per solar pv KW installed 38,429 8 Estimated cumulative lifespan kWh produced 34,839,759 9 Estimated value of cumulative lifespan kWh produced $4,840,145 Average solar cost savings per kWh produced $0.058 Residential solar savings $404,843 Residential Savings - community solar Formula: Cumulative kWh converted to community solar x Average cost savings per kWh = Residential community solar savings Residential kWh converted (goal year)0 Cumulative residential kWh converted (through goal year)0 10 Average community solar cost savings per kWh $0.010 Residential solar savings $0 Residential Savings - utility purchased renewable Formula: Residential kWh converted (goal year)1,166,795 Cumulative residential kWh converted (through goal year)7,000,768 11 Average utility purchased cost/savings per kWh -$0.013 Residential utility purchased cost/savings -$88,840 Residential Savings - electrical energy efficiency Formula: 10 The average cost savings per kWh of community solar subscription is estimated at 10%. 6a Recent average cost per KW is 1000x the per watt cost reported by Solar Reviews https://www.solarreviews.com Value includes assumed financing costs bsaed on 20% initial payment and 80% financed through 10 year loan with 3.5% annual interest rate. Potential savings from tax credits, depreciation, or grants are not included and would reduce these costs. 7 Calculations are based on the geographic energy production factor (https://www.nrel.gov/docs/fy04osti/35297.pdf) multiplied by an average performance ratio of 78% ( https://www.nrel.gov/docs/fy13osti/57991.pdf ) 8 Based on an assumed average useful life of 32.5 years according to NREL research (https://www.nrel.gov/analysis/tech- footprint.html) with an average degradation rate of 0.5% (https://www.nrel.gov/state-local-tribal/blog/posts/stat-faqs-part2- lifetime-of-pv-panels.html) 9 Svings per kWh based on average electricity cost per kWh (https://www.electricitylocal.com/) calculated to the solar array's midlife (year 16) using an estimated average electrical cost inflation of 2% annually Cumulative kWh converted to utility purchased renewable x Average cost/savings per kWh = Residential utility purchased cost/savings 11 The average cost/savings per kWh of utility purchased renewable energy subscription is based on utility fee information. Negative numbers indicate increased consumer spending Cumulative kWh saved from energy efficiency x Average cost per kWh = Gross Residential electrical energy efficiency savings - Residential Efficiency Upgrade Costs = Net Residential Electrical Energy Efficiency Savings Residential kWh saved (goal year)648,219 Cumulative residential kWh saved (through goal year)3,889,316 12a Average cost per kWh $0.101 Gross Residential electrical energy efficiency savings $393,599 13 Residential Electrical Efficiency Upgrade Costs -$346,367 Net Residential Electrical Energy Efficiency Savings $47,232 Residential Savings - natural gas energy efficiency Formula: 14 Residential therms saved (goal year)58,767 14 Cumulative residential therms saved (through goal year)352,604 15 Average cost per therm $1.848 Gross Residential natural gas energy efficiency savings $651,612 14, 16 Residential Natural Gas Efficiency Upgrade Costs -$573,419 Net Residential Electrical Natrual Gas Efficiency Savings $78,193 Potential Total Cumulative Residential Energy Cost Savings Formula: Residential solar savings $404,843 Residential community solar savings $0 Residential utility purchased renewable cost/savings -$88,840 Residential electrical efficiency savings (net)$47,232 Residential natural gas energy efficiency savings (net)$78,193 Potentail Total Cumulative Residential Energy Savings $441,428 Cumulative therms saved from energy efficiency x Average cost per therm = Gross Residential natural gas energy efficiency savings - Residential Natural Gas Efficiency Upgrade Costs = Net Residential Electrical Natural Gas Efficiency Savings 13 Assumed energy efficiency upgrade costs are calculated assuming an average ROI of12% (https://www.aceee.org/blog/2019/05/existing-homes-energy-efficiency) Negative numbers indicate increased consumer 14 Includes fuel switching from fossil fuel heat to electric 15 Energy efficiency savings for natural gas is based on average natural gas cost per therm https://naturalgaslocal.com/ 16 Assumed energy efficiency upgrade costs are calculated assuming an average ROI of12% (https://www.aceee.org/blog/2019/05/existing-homes-energy-efficiency) Negative numbers indicate increased consumer spending Residential solar savings + Residential community solar savings + Residential utility purchased renewable + Residential electrical efficiency savings + Residential natural gas energy efficiency savings - Residential increased electrical costs = Potential Total Cumulative Residential Energy Savings 12a Energy efficiency savings per kWh saved based on average electricity cost per kWh: https://www.electricitylocal.com/ Summary of Estimated Cumulative Savings of Modeled Reductions City of Falcon Heights Notes Energy - Non Residential Non-Residential Savings - grid electricity to solar Formula: Cumulative kWh converted to solar x Average cost savings per kWh = Non-Residential solar savings Non-Residential kWh converted (goal year)1,554,891 Cumulative Non-Residential kWh converted (through goal year)9,329,346 Average solar cost savings per kWh $0.050 6b Average solar installation cost per KW $1,978.00 7 Average kWh produced annually per solar pv KW installed 1,287 Estimated installed solar PV KW installed (goal year) 1,208 Estimated total solar installation costs $2,389,724 8 Estimated average lifespan kWh produced per solar pv KW installed 38,429 8 Estimated cumulative lifespan kWh produced 46,428,071 9 Estimated value of cumulative lifespan kWh produced $4,712,200 Average solar cost savings per kWh produced $0.050 Non-Residential solar savings $466,683 Non-Residential Savings - community solar Formula: Cumulative kWh converted to community solar x Average cost savings per kWh = Non-Residential community solar savings Non-Residential kWh converted (goal year)0 Cumulative Non-Residential kWh converted (through goal year)0 10 Average solar cost savings per solar kWh $0.01 Commercial solar savings $0 Non-Residential Savings - utility purchased renewable Formula: Non-Residential kWh converted (goal year)1,554,891 Cumulative Non-Residential kWh converted (through goal year)9,329,346 11 Average utility purchased cost/savings per kWh -$0.013 Non-Residential utility purchased cost/savings -$118,389 Non-Residential Savings - electrical energy efficiency 10 The average cost savings per kWh of community solar subscription is estimated at 10%. 6b Recent average cost per KW is 1000x the per watt cost reported for commercial solar arrays by NREL https://www.nrel.gov/docs/fy21osti/77324.pdf https://www.nrel.gov/solar/market-research-analysis/solar-installed-system- cost.html Value includes assumed financing costs bsaed on 20% initial payment and 80% financed through 10 year loan with 3.5% annual interest rate. Potential savings from tax credits, depreciation, or grants are not included and would reduce these costs. 7 Calculations are based on the geographic energy production factor (https://www.nrel.gov/docs/fy04osti/35297.pdf) multiplied by an average performance ratio of 78% ( https://www.nrel.gov/docs/fy13osti/57991.pdf ) 8 Based on an assumed average useful life of 32.5 years according to NREL research (https://www.nrel.gov/analysis/tech- footprint.html) with an average degradation rate of 0.5% (https://www.nrel.gov/state-local-tribal/blog/posts/stat-faqs-part2- lifetime-of-pv-panels.html) 9 Svings per kWh based on average electricity cost per kWh (https://www.electricitylocal.com/) calculated to the solar array's midlife (year 16) using an estimated average electrical cost inflation of 2% annually Cumulative kWh converted to utility purchased renewable x Average cost/savings per kWh = Non-Residential utility purchased cost/savings 11 The average cost/savings per kWh of utility purchased renewable energy subscription is based on utility fee information. Negative numbers indicate increased consumer spending Formula: Commercial kWh saved (goal year)2,591,485 Cumulative commercial kWh saved (through goal year)15,548,909 12b Average cost per kWh $0.074 Gross Commercial electrical energy efficiency savings $1,149,583 13 Commercial Electrical Efficiency Upgrade Costs -$1,011,633 Net Commercial Electrical Energy Efficiency Savings $137,950 Non-Residential Savings - natural gas energy efficiency Formula: 14 Non-Residential therms saved (year 10)177,945 14 Cumulative Non-Residential therms saved 1,067,670 15 Average cost per therm $0.431 Gross Non-Residential natrual gas energy efficiency savings $460,166 14, 16 Non-Residential Natural Gas Efficiency Upgrade Costs -$404,946 Net Non-Residential Natural Gas Energy Efficiency Savings $55,220 Potential Total Cumulative Non-Residential Energy Cost Savings Formula: Non-Residential solar savings $466,683 Non-Residential community solar savings $0 Non-Residential utility purchased renewable cost/savings -$118,389 Non-Residential electrical efficiency savings $137,950 Non-Residential natural gas energy efficiency savings $55,220 Potentail Total Cumulative Non-Residential Energy Savings $541,463 Cumulative kWh saved from energy efficiency x Average cost per kWh = Gross Non-Residential electrical energy efficiency savings - Non-Residential Efficiency Upgrade Costs = Net Non-Residential Electrical Energy Efficiency Savings Cumulative therms saved from energy efficiency x Average cost per therm = Gross Non-Residential natural gas energy efficiency savings - Non-Residential Natural Gas Efficiency Upgrade Costs = Net Non-Residential Electrical Natural Gas Efficiency Savings 14 Includes fuel switching from fossil fuel heat to electric 16 Assumed energy efficiency upgrade costs are calculated assuming an average ROI of12% (https://www.aceee.org/blog/2019/05/existing-homes-energy-efficiency) Negative numbers indicate increased consumer spending Non-Residential solar savings + Non-Residential community solar savings + Non-Residential utility purchased renewable + Non- Residential electrical efficiency savings + Non-Residential natural gas energy efficiency savings - Non-Residential increased electrical costs = Potential Total Cumulative Non-Residential Energy Savings 15 Energy efficiency savings for natural gas is based on average natural gas cost per therm https://naturalgaslocal.com/ 12b Energy efficiency savings per kWh saved based on average electricity cost per kWh reported for commercial and industrial with a weighted average (2/3rds commercial rate, 1/3rd industrial rate) reflecting typical non-residential electric consumption paterns: https://www.electricitylocal.com/ 13 Assumed energy efficiency upgrade costs are calculated assuming an average ROI of12% (https://www.aceee.org/blog/2019/05/existing-homes-energy-efficiency) Negative numbers indicate increased consumer spending Potential Total Cumulative Energy Cost Savings (Residential + Non-Residential) Energy sector savings - Energy sector cost increases = Potentail Total Cumulative Energy Cost Savigns Energy Sector Savings Total solar energy savings $871,526 Total community solar energy savings $0 Total energy efficiency savings - electricity $1,543,181 Total energy efficiency savings - natrual gas $1,111,778 Total Gross Energy Savings $3,526,485 Energy Sector Cost Increases Total solar PV installation costs (included in estimated Total Solar Energy Savings) Total utility purchased renewable cost/savings -$207,229 Total energy efficiency upgrade costs - electricity -$1,358,000 Total energy efficiency upgrade costs - natrual gas -$978,365 Total Gross Energy Cost Increases -$2,543,594 Potentail Total Cumulative Energy Cost Savings $982,892 Formula: Summary of Estimated Cumulative Savings of Modeled Reductions City of Falcon Heights Notes Solid Waste - Residential Residential savings - Food Waste Reduction Formula: Cumulative tons of food waste reduced and diverted x Average cost savings per ton = Residential food waste savings Residential food waste reduced (goal year)31 Cumulative residential food waste reduced (through goal year)188 17 Average cost savings per ton reduced $2,469 Residential food waste savings $463,869 Potential Total Cumulative Residential Solid Waste Reduction Cost Savings Residential food waste savings $463,869 Notes Solid Waste - Non-Residential Non-Residential savings - Solid Waste Reduction Formula: Cumulative participant/years x Average reported cost savings per participant/year = Non-Residential solid waste savings Participating businesses (goal year)50 Cumulative participant/years (through goal year)550 18 Average cost savings per participant/year $431 Commercial solid waste savings $1,422,300 Commercial savings - Food Waste Reduction Formula: Cumulative tons of food waste reduced and diverted x Average cost savings per ton = Non-Residential food waste savings Commercial food waste reduced (goal year)37 Cumulative non-residential food waste reduced (through goal year)221 19 Average cost savings per ton reduced $494 Commercial food waste savings $108,908 Potential Total Cumulative Solid Waste Savings Formula: Residential Food Waste Savings + Commercial Solid Waste Savings + Commercial Food Waste Savings = Potentail Total Cumulative Solid Waste Savings 17 Value per ton of residential food waste avoided is based on average for Prevent and Recover strategies by ReFED "A Roadmap To Reduce U.S. Food Waste" https://refed.com/downloads/the-roadmap-to-reduce-u-s--food-waste/ . Food waste share of total organics diverted is calculated based on available waste sort data (see Baseline Assessment document) 19: Average cost savings per ton of food waste avoided is based on an assumed 20% wholesale share of value per ton of residential food waste average for Prevent and Recover strategies by ReFED "A Roadmap To Reduce U.S. Food Waste" https://refed.com/downloads/the-roadmap-to-reduce-u-s--food-waste/ Additionally, the World Resources Institute conducted a study which found that for every $1 invested in food waste reduction, businesses saved $14 in operational costs. See https://www.wri.org/news/release-new-research-finds-companies-saved-14-every-1-invested-reducing-food-waste 18 Savings per business engaged in waste reduction programs are based on MN WasteWise reported average business savings ($431) escallated to 5 year (mid point) Cumulative savings assume businesss reduction strategies remain in force. See https://www.mnchamber.com/your-opportunity/waste-wise Residential Food Waste Savings $463,869 Non-Residential Solid Waste Savings $1,422,300 Non-Residential Food Waste Savings $108,908 Potentail Total Cumulative Solid Waste Savings $1,995,078 The following are abbreviations and terms used in the Climate Action Plan as well as others common to sustainability and climate action concepts. Click here to return to TOC Appendix C Abbreviations and Glossary of Terms C -1 | FALCON HEIGHTS CLIMATE ACTION PLAN City of Falcon Heights Climate Action Plan Glossary of Terms 1 Abbreviations ADU Accessory Dwelling Unit BAU Business as usual forecast BEV Battery electric vehicle BIPOC Black, Indigenous, people of color C&D Construction and demolition CAP Climate Action Plan CE Carbon Equivalent CDP Carbon Disclosure Project CFC Chlorofluorocarbons CH4 Methane CHP Combined Heat and Power CO2 Carbon dioxide CO2 e Carbon dioxide equivalent CSG Community Solar Garden DCFC Direct Current Fast Charger DOE U.S. Department of Energy EMS Emergency medical services EPA U.S. Environmental Protection Agency EV Electric vehicle EVSE Electric vehicle supply equipment FEMA Federal Emergency Management Agency FTE Full-time equivalent GCoM Global Covenant of Mayors GDP Gross Domestic Product GHG Greenhouse gas GWP Global warming potential HFC Hydrofluorocarbons HVAC Heating, Ventilation, and Air Conditioning ICE Internal Combustion Engine vehicle IPCC Intergovernmental Panel on Climate Change kWh Kilowatt-hour LEED Leadership in Energy and Environmental Design LEV Low emission vehicle LIDAC Lower Income and Disadvantaged Community MWH Megawatt hour – 1,000 Kilowatt-hours MSW Municipal Solid Waste MT Metric ton equivalent to 1,000 kg (also known as Metric Tonne) MMT Million Metric tons MMBTU Million British Thermal Units MT CO2 e Metric tons of carbon dioxide equivalent NGO Non-Governmental Organization N2O Nitrous Oxide NOx Nitrogen Oxides NOAA National Oceanic and Atmospheric Administration NZE Net-Zero Emissions O3 Ozone ODS Ozone Depleting Substances PACE Property Assessed Clean Energy PFC Perfluorocarbons PHEV Plug-in hybrid electric vehicle PM2.5 Particulate matter of 2.5 micrometer diameter or less POC People of color PPA Power Purchase Agreement PUB Public Utilities Board PV Photovoltaic (solar photovoltaic) REC Renewable Energy Credit RCP Representative Concentration Pathway SO2 Sulfur Dioxide SF6 Sulfur Hexafluoride SULEV Super ultra-low emission vehicle t Ton equivalent to 2,000 lbs (United States) TOG Total Organic Gasses USGS U.S. Geological Survey VMT Vehicle miles traveled VHT Vehicle hours traveled ZEV Zero emission vehicle ZNEB Zero Net Energy Building City of Falcon Heights Climate Action Plan Glossary of Terms 2 A Accessory Dwelling Unit (ADU) A secondary dwelling unit associated with a primary single-family home, which can be located within or attached to the main residence, or in a separate accessory building on the same property. Action Specific tasks set out to realize the objectives and methods highlighted in a given plan. Activity Data Information regarding the scale of human actions that lead to emissions or removals within a specified timeframe. This includes data like energy consumption, metal production, land coverage, management procedures, and usage of lime, fertilizers, and waste generation. Adaptation Refer to “Climate Readiness or Resilience” Adaptive Capacity The combination of societal, technological, and monetary abilities that individuals or groups possess to initiate and sustain actions against climate change. Aerosols Airborne particles, either solid or liquid, typically ranging between 0.01 and 10 micrometers. These particles, which can be of natural or human-made origin, can persist in the atmosphere for extended periods. They can affect climate by directly interfering with radiation or indirectly by influencing cloud properties. Afforestation The process of establishing forests on lands that weren't previously forested. Air Pollutant Any substance, either originating from human activities or naturally, present in the atmosphere that might have detrimental impacts on humans, fauna, flora, or materials. Anthropogenic In relation to greenhouse gas records, "anthropogenic" denotes emissions and removals directly stemming from human actions or from natural processes influenced by human activities. Atmosphere The layer of gases encasing the Earth. It mainly consists of nitrogen and oxygen, along with trace gases like argon, helium, and certain greenhouse gases like carbon dioxide and ozone. The atmosphere also encompasses varying amounts of water vapor and contains other components like clouds and aerosol particles. B Baseline Emissions A reference point, either through measurement, calculation, or a specific timeframe, for making comparisons. It represents emission levels in scenarios devoid of policy changes or project implementations. Such evaluations are crucial to gauge the impact of emissions-reducing measures. Base Year The initial year used for data gathering. Emission- reducing goals are often set with this year as a reference. Beneficial Electrification Beneficial electrification is the process of replacing fossil fuels with electricity to reduce energy costs and greenhouse gas emissions. It can be applied to many sectors, including transportation, residential buildings, and commercial buildings. Biogenic Derived from the biological activities of living entities. The term "biogenic" exclusively pertains to recently formed biological materials. The IPCC suggests categorizing peat as fossil carbon due to its lengthy replacement cycle. Biogeochemical Cycle The continuous transfer of essential chemicals, crucial for life, within Earth's systems, including carbon, nitrogen, oxygen, and phosphorus. Biomass Refers either to (1) the combined weight of all living organisms within a designated area or species, usually represented as dry weight or (2) Organic substances originating from or recently derived from City of Falcon Heights Climate Action Plan Glossary of Terms 3 living beings, excluding peat, and encompasses derived products and waste. Biomass Waste Biological, non-fossil substances of biological origin that are either residual or discarded. This definition includes biogenic municipal waste, landfill gas, and other forms of biomass but excludes certain fuels and biofuels. EIA's data on "biomass waste" also count energy crops produced specifically for power generation. BIPOC Defined as "Black, Indigenous, and people of color", this U.S.-specific term emphasizes the experiences of Black and Indigenous communities, showcasing or influencing the broader socio- economic dynamics encountered by all non-white individuals. Black Carbon A type of aerosol characterized based on its capacity to absorb light, its chemical reactivity, and/or thermal resistance; comprises elements like soot and charcoal. Blue Carbon Carbon that's absorbed and retained by coastal ecosystems and wetlands, aiding in countering climate change impacts. British Thermal Unit (BTU) A conventional measure of thermal energy, representing the energy needed to elevate the temperature of a pound of water by a single degree Fahrenheit. Business As Usual Forecast (BAU) The Intergovernmental Panel on Climate Change (IPCC) describes this as the predicted emission levels if upcoming trends emulate historical ones and no additional policy amendments are enacted. This projection presumes no further emission-curbing actions will be adopted beyond existing or committed measures. BAU forecasts do include anticipated reductions resulting from existing requirements or commitments, such as federal vehicle fuel efficiency standards and electric utility carbon-reduction commitments, which are outside the scope of this plan. C Carbon Cycle The systematic flow and storage of carbon across different reservoirs. This involves four primary carbon storage areas: the atmosphere, the terrestrial environment (including freshwater systems), oceans, and sediments (which encompass fossil fuels). The carbon exchanges between these reservoirs are driven by a mix of chemical, physical, geological, and biological factors. Though the ocean holds a significant amount of near-surface carbon, its exchange with the atmosphere is relatively slow. Carbon Dioxide (CO2) A gas found naturally in the environment, but also produced from burning fossil fuels, biomass, through land-use alterations, and various industrial activities. As the main human-induced greenhouse gas, it impacts the Earth's ability to reflect heat. Other greenhouse gases are often measured relative to CO2, which has a Global Warming Potential set at 1. Carbon Dioxide Equivalent (CO2 e) A standard for comparing the emissions from different greenhouse gases based on their potential to warm the planet. It's determined by equating the amount of a gas emitted to the amount of CO2 that would have the same global warming impact. Carbon Disclosure Project (CDP) A global initiative allowing organizations and cities to publicly share their environmental impacts, notably related to climate risks. CDP stands as one of the recognized disclosure platforms endorsed by GCoM. Carbon Emissions The process of releasing carbon dioxide into the atmosphere, primarily through human activities like burning fossil fuels for energy. Carbon Equivalent (CE) A metric for comparing emissions from various greenhouse gases based on their capacity to influence global warming. Carbon equivalents are derived from carbon dioxide equivalents using a specific conversion factor related to molecular weights. Carbon Free City of Falcon Heights Climate Action Plan Glossary of Terms 4 Activities, systems, or products that don't emit carbon dioxide or other greenhouse gases. Often associated with sustainable or renewable energy discussions, not every "carbon free" source is renewable. For instance, while both wind and nuclear energy are carbon-free, only wind is renewable. Carbon Intensity The ratio of carbon emitted for every unit of energy used. A typical measure of this is the carbon weight per British thermal unit (Btu) of energy. When considering a single fuel type, carbon intensity and the emission coefficient are the same. With multiple fuels, it's an aggregate value. Carbon Neutral / Carbon Neutrality Achieving a balance where the amount of CO2 produced annually is equal to the amount removed or offset, leading to net-zero CO2 emissions by a specific date. Carbon Neutrality is also sometimes applied to all greenhouse gas emissions. In those instances the term is sometimes used interchangeably with “Net Zero” or “Climate Neutral” Carbon Offsets Mechanisms to counterbalance carbon dioxide or other greenhouse gas emissions by funding equivalent reductions elsewhere. They are quantified in metric tonnes of CO2 -equivalent and can be traded to neutralize emissions from an entity's operations. Carbon Sinks Natural environments, such as forests or oceans, recognized for their ability to absorb and store carbon dioxide from the atmosphere. Carbon Sequestration The process of capturing and storing CO2, either in oceans, terrestrial environments like forests and soils, or in geological formations underground. Chlorofluorocarbons (CFCs) Gases, regulated under the 1987 Montreal Protocol, used in several applications like refrigeration and air conditioning. Since they don't break down in the lower atmosphere, they reach the upper atmosphere and can deplete ozone. Their usage is being phased out in favor of alternative compounds, some of which are greenhouse gases under the Kyoto Protocol. Circular Economy A sustainable economic model that deviates from the traditional linear approach (produce, use, discard) by focusing on reducing resource inputs and waste. It emphasizes durable product design, repair, reuse, and recycling to minimize waste. Climate Often described as the "typical weather" of an area, climate is a statistical representation of weather patterns over extended periods, typically 30 years as per World Meteorological Organization (WMO) standards. It encompasses averages and variability of factors like temperature and precipitation. On a broader scale, climate is the comprehensive state of the climate system, including statistics. Climate Adaptation or Resilience The ability of ecosystems or communities to anticipate, stand against, respond, and recover from disruptive events. It involves adjusting to changing climate conditions to lessen risks and vulnerabilities. Climate Action Plan A comprehensive strategy detailing steps that a municipality, business, or government will take to decrease greenhouse gas emissions and prepare for climate change, fostering sustainable and resilient growth. Climate Change Any significant, lasting change in the average or variability of climate conditions over extensive periods. It can stem from natural processes, persistent changes in atmospheric composition due to human activities, or alterations in land use. Climate Hazard A climate event or situation that can negatively affect human health, resources, or livelihoods, encompassing sudden shifts in climate systems like heavy rainfall or prolonged droughts. Climate Migration The relocation of individuals due to the effects of climate change impacting their way of life or degrading their living conditions. This can result from changing water supplies, altered agricultural yields, City of Falcon Heights Climate Action Plan Glossary of Terms 5 or factors like rising sea levels and increased storm intensity. Climate Model A mathematical representation used to simulate the key components of climate, including the atmosphere, oceans, land, and ice. These models are used to forecast potential future climate changes. Climate Neutral / Climate Neutrality Achieving a balance where the amount of all GHG emissions produced annually is equal to the amount removed or offset, leading to net-zero GHG emissions by a specific date. “Climate Neutral” is sometimes used interchangeably with “Carbon Neutral”, however, “Carbon Neutral” often interpreted as addressing CO2 emissions only, whereas “Climate Neutral” is intended to address all GHG gases. Climate Scenario A structured and logical narrative of potential future climatic conditions, built on a set of assumptions about potential future events. Climate Risk The potential negative outcomes due to climatic changes, where valuable assets are at risk. The risk is calculated based on the likelihood of certain climate events or changes happening and the potential impact of those changes. It is a product of the system's vulnerability and the climate hazards faced. Climate Vulnerability The extent to which a system is at risk from adverse climate changes, including climate variability and extremes. It depends on how exposed the system is to these changes, its inherent sensitivity, and its ability to adapt. Vulnerability can be described as the potential negative impact minus the system's adaptive capacity. Climate Vulnerability Assessment An analysis aiming to pinpoint and categorize the threats posed by climate change. It guides the creation of strategies to address these threats and can cover diverse areas like food security, socio- economic factors, and extreme weather patterns. Co-Benefit Additional advantages or benefits (e.g., health, economic, societal) that arise indirectly from climate adaptation and mitigation measures. Co-generation A facility or system that simultaneously and efficiently produces multiple forms of energy, usually heat and power, in an integrated manner. Community Choice Aggregation (CCA) CCA programs, or sometimes known as “Community Power Aggregation”, empower local governments to source power for their citizens, businesses, and municipal facilities from alternative providers, while still utilizing the distribution services of their existing utilities. Setting up a CCA generally needs state-level legislation. For more details, one can visit EPA’s dedicated CCA website: [EPA’s CCA webpage](https://www.epa.gov/green-power- markets/community-choice-aggregation) Combined Heat and Power (CHP) A system designed to concurrently generate electricity and useful heat, aiming for optimal energy use. Some utilities might sell the heat produced for public use, while certain industries might sell surplus electricity to other businesses or utility companies. Community Power Aggregation Refer to “Community Choice Aggregation” Community Solar / Community Solar Garden (CSG) Shared solar installations that allow community members to benefit from solar energy without installing panels on individual properties. Participants receive bill credits based on their share of the generated power. Generally, the electricity from community solar farms is priced lower than traditional utility rates. Complete Streets A street design concept that ensures streets are made to accommodate all users safely and efficiently, regardless of their mode of transportation or age. Consistency Ensuring that an inventory remains uniform in its methodologies and data over time. If the same methods and datasets are consistently applied over years, then the inventory is considered consistent. City of Falcon Heights Climate Action Plan Glossary of Terms 6 Continuous Emission Monitor (CEM) A monitoring system placed within smokestacks or other emission sources that continuously measures and reports air emissions. Cool Roof Roofing materials engineered to reflect more sunlight and absorb less heat, thereby reducing the heat transferred to the building or its surroundings. Cool Pavement Pavement materials designed to reflect sunlight and decrease heat absorption, minimizing heat transfer to the nearby environment. Criteria Air Pollutant Specific air pollutants for which permissible exposure levels are determined, and corresponding air quality standards are established. Examples include carbon monoxide, ozone, and various particulates. The term arises from the U.S. EPA's obligation to define these pollutants and their impacts on health and the environment. Standards can be reviewed and updated based on new scientific information. D Decarbonization The transition towards reducing carbon emissions by adopting cleaner energy sources, enhancing energy efficiency, or capturing and storing released carbon. The ultimate aim is to minimize the climate impact and move towards a carbon-neutral society. Deforestation The conversion of forested areas into non-forest uses. Deforestation is often linked to the amplified greenhouse effect for two main reasons: the combustion or decay of wood releases carbon dioxide, and the removed trees no longer absorb atmospheric carbon dioxide through photosynthesis. Demand Side Management (DSM) Initiatives designed to modify consumer energy consumption patterns using methods like education and financial incentives. DSM seeks to reduce energy consumption, particularly during peak demand periods, and shift usage to times when demand is typically lower. Direct Current Fast Charger (DCFC) DCFC charging is designed to deliver more power at faster speeds than Level 2 chargers with outputs ranging from 50 kW to 350 kW. They can recharge an EV battery to 80% in anywhere from 15 minutes to 45 minutes, depending on the vehicle's voltage capacity. DCFC is also sometimes known as “Level 3 charging”, or “Rapid Charging”. Distillate Fuel Oil A category of petroleum products obtained through standard distillation processes. This encompasses diesel fuels and fuel oils, including types like No. 1, No. 2, and No. 4 diesel fuel. These products are used in various engines, from road vehicles to trains and agricultural equipment. Additionally, No. 1, No. 2, and No. 4 fuel oils are typically employed for heating spaces and generating electricity. District Heating A system that distributes heat, generated at a centralized point, via a network of pipes to provide heating for homes and businesses in a specified area or community. E Ecosystem Services The benefits ecosystems offer to human welfare. These benefits range from tangible resources like water and food to services like air purification, flood control, and climate stabilization. Electric Vehicle (EV) A vehicle that can be powered by an electric motor that draws electricity from a battery and is capable of being charged from an external source. An EV includes both a vehicle that can only be powered by an electric motor that draws electricity from a battery (all-electric vehicle) and a vehicle that can be powered by an electric motor that draws electricity from a battery and by an internal combustion engine (plug-in hybrid electric vehicle). Electric vehicle supply equipment (EVSE) The infrastructure that allows electric vehicles to charge from an electricity source. It's also known as an EV charging station, EV charger, or charging dock. EVSE takes electrical power from the grid and transfers it to the vehicle's battery. Emissions City of Falcon Heights Climate Action Plan Glossary of Terms 7 The act of discharging certain substances, often gases in the context of climate change, into the environment. Emission Factor A value that signifies the amount of a gas emitted or removed per unit of activity. This coefficient is usually derived from a collection of measurement data and provides a representative emission rate for a set of specific conditions. Emission Inventory A calculation of the total pollutants released into the atmosphere from various significant sources, measured over a defined period, such as daily or annually. Emission Rate The quantity of a specific pollutant released over a set duration, commonly expressed in units like tons per year. Energy Burden The fraction of a household's total income spent on energy costs. An "high" energy burden is identified when energy costs comprise 6% or more of the household income, while it's deemed "severe" if above 10%. Energy Savings / Energy Efficiency Refers to the sustainable reduction in the amount of energy consumed for the same level of output or performance. For instance, a modern heater that requires less energy to provide the same warmth results in energy efficiency improvements. Energy Tariff A pricing structure, or utility tariff, that dictates how consumers are charged by energy providers for their electric or gas consumption. Energy tariffs are subject to government approval and review. Environmental Justice The equitable treatment and active participation of all individuals, regardless of their race, ethnicity, income, or origin, in the processes related to environmental laws, policies, and regulations. Equity Being just and fair in treatment, acknowledging that people have diverse circumstances and providing them with the necessary resources and opportunities to achieve equal outcomes. In terms of climate change, equity encompasses both shielding from environmental hazards and ensuring access to environmental benefits, irrespective of socio- economic factors. F Federal Emergency Management Agency (FEMA) A federal agency that leads the country's response to disasters, including natural disasters, man-made incidents, and terrorist events. Fluorocarbons Molecules made up of carbon and fluorine, which can also include elements like hydrogen, chlorine, or bromine. Some well-known types are chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), hydrofluorocarbons (HFCs), and perfluorocarbons (PFCs). Flux (1) Materials, like limestone and dolomite, used to moderate the heat or energy demands of mineral processing, like metal smelting. They can also function as agents to produce slag. (2) The rate or volume of a liquid or gas moving across a specific area over time, such as the " CO2 absorption rate by forests". Fossil Fuel Deposits of hydrocarbons formed from ancient organic matter, including coal, oil, and natural gas. Fuel Combustion The intentional burning of materials in a device designed to provide heat or mechanical energy. This process can be for direct application or use elsewhere. Fuel Switch (see also “Beneficial Electrification”) The process of transitioning from one energy source to another, commonly from non-renewable sources like fossil fuels to renewable ones like wind or solar, to reduce both costs and emissions. Fugitive Emissions City of Falcon Heights Climate Action Plan Glossary of Terms 8 Unintentional leaks of gases from surfaces such as seals or underground pipelines due to deterioration or faults. G Geologic Carbon Sequestration The practice of capturing CO2, often from sources like coal-powered plants, and injecting it deep underground for storage. With careful site selection and management, this approach has potential in reducing atmospheric CO2 levels. GHG Refer to “Greenhouse Gas” Global Environmental Change Significant, accelerated alterations to Earth's natural systems, encompassing climate shifts, biodiversity loss, resource depletion, pollution, and other large- scale environmental disruptions. Global Warming The average rise in atmospheric temperature near the Earth's surface and within the troposphere, which can lead to shifts in global climate. This warming can arise from both natural phenomena and human activities. Typically, "global warming" is used to refer to the temperature increase resulting from the enhanced emissions of greenhouse gases due to human actions. See also Climate Change. Global Warming Potential (GWP) An index that calculates the radiative effects of greenhouse gases, considering their ability to trap heat compared to carbon dioxide over a specified timeframe. The GWP evaluates the cumulative effect of these gases in the atmosphere based on their longevity and their potential to absorb infrared radiation. The Kyoto Protocol uses GWPs derived from 100-year timespan emissions. GCoM Global Covenant of Mayors GCoM represents the world's largest alliance dedicated to urban climate leadership. Comprising over 10,000 city and local governments, GCoM's goal is to encourage and support action on climate and energy at the grassroots level globally. Green Streets An urban design approach that incorporates plant life, soil, and engineered structures to manage, slow, and purify stormwater runoff from surfaces that don't absorb water. Greenhouse Effect A natural process where specific gases in the atmosphere trap heat near the Earth's surface, leading to a warming effect. If concentrations of these greenhouse gases increase, this effect intensifies, leading to a gradual increase in the Earth's temperature. Global Protocol for Community-Scale Greenhouse Gas Emissions Inventories A comprehensive and transparent framework adopted globally for cities and local governments to consistently measure, calculate, and report their greenhouse gas emissions. Greenhouse Gas A gas that can absorb and emit infrared radiation, contributing to the greenhouse effect. Some common greenhouse gases include water vapor, carbon dioxide, methane, nitrous oxide, and certain industrial gases like hydrofluorocarbons. Greenhouse Gas Reduction Efforts aimed at diminishing the amount of greenhouse gases released into the atmosphere, thereby mitigating potential adverse climate impacts. Green Infrastructure Green infrastructure encompasses a diverse array of green spaces and features, both in urban and rural areas, that serve to enhance the well-being of communities and provide environmental advantages. It extends beyond traditional open spaces like parks and playing fields to include a range of measures that use plant or soil systems, permeable pavement and surfaces, stormwater harvest and reuse, or landscaping to manage stormwater and reduce flows to sewer systems or to surface waters. This approach helps counter water pollution in urbanized areas caused by stormwater carrying contaminants Green Roof A roof that incorporates vegetation over a waterproof layer. Green roofs can be categorized as extensive, intensive, or semi-intensive based on the depth of planting medium and amount of City of Falcon Heights Climate Action Plan Glossary of Terms 9 maintenance they require. They offer benefits like mitigating the heat island effect, managing stormwater, and enhancing green space in urban areas. Green Wall This is a vertical extension of the green roof concept, where vegetation is grown on building exteriors. Gross Domestic Product (GDP) The total value of goods and services produced within a country's borders in a specific timeframe, typically a year. It doesn't account for the depreciation of assets or depletion of natural resources. Groundwater Water located beneath the Earth's surface, filling the spaces between soils and rocks. H Halocarbons A group of organic compounds composed partially of halogens. They encompass chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), hydrofluorocarbons (HFCs), halons, and more. Many halocarbons have significant Global Warming Potentials and some also contribute to ozone layer depletion. Hazard The potential for an event, whether natural or human-induced, to cause harm to people, property, infrastructure, or the environment. Heat Island An urban area that exhibits higher temperatures than its surrounding rural areas due to human activities. This phenomenon is attributed to factors like heat-absorbing surfaces and structures. See also “Micro Heat Island”. Heating, Ventilation, and Air Conditioning (HVAC) a term that refers to systems that regulate and move heated and cooled air throughout buildings. HVAC systems are used to improve air quality and maintain a comfortable indoor climate. Hydrocarbons Compounds made up of only hydrogen and carbon atoms. The term can also refer to petroleum compounds which might contain elements like sulfur, nitrogen, or oxygen. Unsaturated hydrocarbons contain either double or triple carbon- carbon bonds. Hydrofluorocarbons (HFCs) Molecules made up of hydrogen, fluorine, and carbon. These were developed as replacements for ozone-depleting substances and are used in a variety of industrial processes. While HFCs don't deplete the ozone layer, they are potent greenhouse gases with varying Global Warming Potentials. I ICLEI Local Governments for Sustainability: An association of local governmental entities focused on reducing carbon emissions and fostering sustainable urban growth. ICLEI members, along with a team of specialists, collaborate through capacity building, partnerships, and peer interaction to effect change towards urban sustainability. Impact A consequence or effect that arises due to climate change on any system's structure or functioning. Examples include severe heatwaves, sea-level rise, or alterations in rainfall causing floods or droughts. Indicator A numerical representation highlighting a specific facet of vulnerability to climate change. For instance, a forecasted alteration in annual average temperature or the count of species at risk. Internal Combustion Engine Vehicle (ICE) Vehicles which ignite and combust fuel within an internal combustion engine. Fuels used in ICE vehicles are typically gasoline and diesel. Intergovernmental Panel on Climate Change (IPCC) Founded in 1988 by the World Meteorological Organization and the United Nations Environment Programme, the IPCC is tasked with evaluating scientific and technical information related to all aspects of climate change. The IPCC informs governments about the state of knowledge of climate change by examining all the relevant scientific literature on the subject. The IPCC is scientific entity and is not a legislative body. K City of Falcon Heights Climate Action Plan Glossary of Terms 10 Kilowatt Hour (kWh): A unit representing electrical energy consumption, equivalent to using 1,000 watts continuously for an hour. Kyoto Protocol A supplement to the United Nations Framework Convention on Climate Change (UNFCCC) ratified in Kyoto, Japan, in 1997. This protocol incorporates legally binding obligations to reduce greenhouse gas emissions. Countries listed in the Protocol's Annex B pledged to reduce their emissions of six major greenhouse gases by at least 5% from 1990 levels between 2008 and 2012. The Protocol became effective on February 16, 2005. L Land Use and Land Use Change Land use pertains to the human activities performed on a certain type of land cover. Meanwhile, land use change denotes alterations in how land is managed or utilized by humans, which can influence land cover. Changes in land cover and land use can affect climate properties such as surface albedo and greenhouse gas sources/sinks, potentially influencing climate on various scales. Leadership in Energy and Environmental Design (LEED) LEED is a certification system for evaluating and promoting sustainable building and design practices. Developed by the U.S. Green Building Council (USGBC), LEED provides a framework for environmentally responsible construction, aiming to improve energy efficiency, reduce water usage, and decrease greenhouse gas emissions. Buildings can earn LEED certification at different levels (Certified, Silver, Gold, or Platinum) based on their performance across several criteria, including energy use, indoor environmental quality, and sustainable site development. Level 1 Charger An electric vehicle charging device that provides charging through a common residential 120-volt (120V) AC outlet. Level 1 chargers can take 40-50+ hours to charge a BEV to 80 percent from empty and 5-6 hours for a PHEV. Level 2 Charger An electric vehicle charging device with a higher AC charging capacity than Level 1 chargers. They typically operate at 240V for residential use or 208V for commercial use. Level 2 chargers can charge a BEV to 80 percent from empty in 4-10 hours and a PHEV in 1-2 hours. LIDAC Communities Low Income / Disadvantaged Communities (LIDACs): communities where residents have low incomes, limited access to resources, and face disproportionate environmental or climate burdens. Living Streets "Living streets" amalgamate the principles of green streets and complete streets while emphasizing the enhancement of residents' life quality in urban areas. LULUCF An abbreviation for "Land Use, Land Use Change, and Forestry," a category in greenhouse gas inventory documentation. M Megawatt Hour (MWH): An electrical energy unit denoting the consumption of a million watts over an hour. Methane (CH4) A hydrocarbon that acts as a greenhouse gas with a global warming potential estimated to be 28 times stronger than carbon dioxide. Methane arises from several sources, including decomposition in landfills, flooded rice fields, digestion in animals, and fossil fuel production. The GWP value is sourced from the IPCC's Fifth Assessment Report (AR5). Metric Ton Equivalent to a Megagram or 1,000 kilograms, a metric ton, sometimes referred to as a metric tonne, is a standard international unit for mass. Micro Heat Island Smaller localized zones within urban environments experiencing elevated temperatures in comparison to surrounding areas. Such hotspots might include asphalt roads, non-green roofs, or barren parking lots. The microclimate and unique built environment conditions heavily influence these micro heat islands. Refer also to "Heat Island". City of Falcon Heights Climate Action Plan Glossary of Terms 11 Million Metric Tons (MMT) A standard measurement often utilized in greenhouse gas documentations, equivalent to a Teragram (Tg). Mitigation: Efforts to reduce or curb the extent or speed of long- term climatic warming and its associated effects. Mitigation typically encompasses the reduction of human-induced greenhouse gas emissions. Mobile Sources Transportation means that emit pollutants, including cars, motorbikes, trucks, off-road vehicles, boats, and planes. Mode Share The proportion of travelers opting for a specific mode of transportation. Mode share serves as a vital metric when shaping sustainable transportation strategies in a city or region, as it highlights the prevalent use of different transport options. This metric showcases the effectiveness of infrastructures, policies, investments, and urban designs in facilitating various transport modes. Model A model serves as a numerically-based representation of real-world scenarios, often omitting or simplifying certain details to emphasize core elements. Municipal Power Aggregation Refer to “Community Choice Aggregation.” Municipal Solid Waste (MSW) Waste originating from homes and certain non- hazardous industrial, institutional, and commercial sources. Typically, this waste is directed to municipal disposal sites. N National Oceanic and Atmospheric Administration (NOAA) A US agency responsible for weather forecasting, monitoring oceanic and atmospheric conditions, charting the seas, conducting deep-sea exploration, and managing fishing and protection of marine mammals and endangered species in the US exclusive economic zone. Natural Sources Emission sources that aren't human-induced, including biological, geological sources, wildfires, and dust carried by the wind. Net Energy Metering (NEM) Net Energy Metering, commonly referred to as Net Metering, enables residential and business consumers generating their own solar energy to sell their surplus electricity back to the grid. The rate schedule for NEM determines compensation for this electricity. While net metering laws exist in many states, in others, utilities may offer these programs either voluntarily or due to regulatory decisions. Net Zero Emissions (NZE) Pertains to a community, business, institution, or building that produces the same amount of energy it consumes through renewable and GHG emission- free sources, resulting in zero net emissions over a year. With a net zero target, only a small portion of residual emissions, no more than 5-10%, should be offset using high-quality carbon removal methods. Nitrogen Fixation The process where atmospheric nitrogen gas transforms into forms beneficial for plants and other organisms, achieved through lightning, bacteria, and blue-green algae. This process is integral to the nitrogen cycle. Nitrogen Oxides (NOx) Gaseous compounds comprising nitrogen and oxygen. These gases emerge from vehicle exhaust and power generation. As they can form photochemical ozone, impact visibility, and harm health, they're deemed pollutants. Nitrous Oxide (N2O) A potent greenhouse gas with a warming potential 265 times greater than carbon dioxide. Key sources encompass soil management practices, fossil fuel burning, and biomass combustion. Its global warming potential is derived from the IPCC's Fifth Assessment Report (AR5). Non-Governmental Organization (NGO) a group that works independently of governments to improve social conditions. NGOs are often non-profit City of Falcon Heights Climate Action Plan Glossary of Terms 12 institutions that are established at the community, national, or international level. O Ozone (O3) A gaseous compound composed of three oxygen atoms. In the troposphere, ozone forms naturally and through photochemical reactions involving human-produced gases. In the stratosphere, it forms when solar UV radiation interacts with diatomic oxygen. While tropospheric ozone is a greenhouse gas, stratospheric ozone is vital for blocking harmful UV radiation. Ozone Depleting Substances (ODS) Compounds causing the depletion of the stratospheric ozone layer. This category includes substances like CFCs, HCFCs, halons, and more. These substances, predominantly stable in the troposphere, degrade in the stratosphere under UV radiation, releasing ozone-depleting chlorine or bromine. P Perfluorocarbons (PFCs) Man-made compounds solely composed of carbon and fluorine. Used as substitutes to ozone-depleting substances and emitted during certain industrial processes. Despite not depleting the ozone, they are formidable greenhouse gases. (IPCC's Fourth Assessment Report (AR4)) Phantom Load Refers to the power consumed by electronic devices and appliances even when switched off. Devices drawing "phantom loads" constantly utilize electricity. Photosynthesis A biological process where plants absorb carbon dioxide to produce carbohydrates, releasing oxygen in the process. The mechanism varies based on different atmospheric carbon dioxide concentrations. Plug-in hybrid electric vehicle (PHEV) A type of vehicle that combines features of both gasoline-powered and electric vehicles. PHEVs use batteries to power an electric motor, and another fuel, such as gasoline or diesel, to power an internal combustion engine or other propulsion source. PHEVs can charge their batteries through charging equipment and regenerative braking Plug Load Refers to the energy consumption of devices plugged into electrical outlets. In offices, major plug loads include computers, printers, and copiers. As buildings become more energy efficient, the relative importance of plug loads increases. POC An acronym for “people of color” or “person of color”, encompassing all non-white demographic groups. See also “BIPOC” Point Sources Specific locations emitting pollutants into the atmosphere, like industrial smokestacks. Power Purchase Agreement (PPA) A contract where one party, the generator, produces electricity, and the other, the buyer, agrees to purchase it. Individual or grouped customers can forge PPAs with energy developers. PPAs enable long-term renewable energy commitments and can serve as direct renewable energy investments. Property-Assessed Clean Energy (PACE) A financial structure allowing property owners to fund renewable energy and energy efficiency improvements. Eligible properties include residential, commercial, and industrial sites. Upgrades can be geared toward energy efficiency, renewable energy, and water conservation. Process Emissions These are emissions resulting from chemical transformations in industrial processes that are distinct from burning R RCP 8.5 A Representative Concentration Pathway climate model frequently considered the climate model representing “business as usual” forecasts if global GHG emissions are not reduced and fossil fuels are continued to be used. Radiative Forcing A shift in equilibrium between incoming sunlight and outgoing infrared radiation. Ordinarily, the Earth's City of Falcon Heights Climate Action Plan Glossary of Terms 13 incoming and outgoing radiations are almost balanced. However, the introduction of greenhouse gases captures more infrared radiation, reflecting it back to Earth's surface, leading to a warming effect. Reforestation The act of reintroducing forests on lands that once held forests but were later repurposed. Regeneration The process of reestablishing young trees, either naturally or through human intervention, typically preserving the existing forest type after the previous forest has been removed. Renewable Energy Energy sourced from naturally renewable elements such as the sun, wind, water, and geothermal heat. Renewable Energy Credits (RECs) Certificates representing the benefits and attributes of electricity generated from renewable sources. Each REC represents one megawatt-hour (MWh) of renewable electricity dispatched to the grid. The largest reduction in Evanston's emissions is attributed to REC purchases. Representative Concentration Pathway (RCP) climate change scenarios to project future greenhouse gas concentrations. These pathways describe future greenhouse gas concentrations and have been formally adopted by the IPCC. There are a range of RCP climate models from RCP 2.6 to RCP 8.5 reflecting a range of potential human-made GHG emission scenarios. The numbers represent the expected change in radiative forcing through the end of the 21st century. Residence Time The typical duration a single atom or molecule remains in a particular storage area. In the context of greenhouse gases, it generally refers to the duration a molecule lingers in the atmosphere. Resilience / Resiliency The capacity to foresee, ready for, counteract, and promptly bounce back from climate-induced threats, ensuring minimal damage to society, economy, and natural settings. Resilience Hub A resilience hub is a community-serving facility that supports residents and communities before, during, and after emergencies. Resilience hubs can also provide resources to support communities in reducing greenhouse gas emissions. Reservoir Either (1) a part of the climate system where a greenhouse gas or its precursor is housed; or (2) human-manipulated water bodies where significant variations in water area might occur due to water regulation. Respiration A biological process where living entities transform organic substances into carbon dioxide, using up oxygen and releasing energy in the process. Retro-commissioning A comprehensive approach to enhance a building's operational efficiency by ensuring its control systems operate optimally and align with the building's intended and actual usage. Ride-share A system where individuals share transport means, usually through carpooling or joining a vanpool. Typically facilitated by a platform connecting drivers with potential riders. S Scope 1: Refers to emissions discharged directly within the city's boundaries due to fossil fuel combustion and the decomposition of waste in landfills and wastewater facilities. Scope 2: Refers to emissions generated outside the city resulting from the city's consumption of electricity. Scope 3: Pertains to emissions linked to local government functions that can be quantified and disclosed but don't fall under Scope 1 or 2. Examples include outsourced activities and commuting of employees. Short Ton A standard ton measurement in the U.S., equivalent to 2,000 lbs or about 0.907 metric tons. City of Falcon Heights Climate Action Plan Glossary of Terms 14 Sink Any activity, process, or mechanism responsible for removing a greenhouse gas, aerosol, or their precursor from the atmosphere. Social Cost of Carbon An estimation of the economic damage due to climate change effects, calculated as the monetary value of total damages arising from emitting a single ton of carbon dioxide. Solar Radiation The sun's emitted electromagnetic waves. This radiation, also known as shortwave radiation, has wavelengths mainly in the visible spectrum due to the Sun's temperature. Solar Photovoltaic (PV) A system that directly transforms sunlight into electricity using semiconductors, primarily silicon. Suitable for homes, businesses, and large-scale operations, solar PV systems can be roof-mounted, ground-based, or integrated into building structures to produce renewable energy. Source Any process or activity that introduces greenhouse gases, aerosols, or their precursors into the atmosphere. Stationary Sources Fixed locations like power stations, manufacturing plants, and refineries that emit pollutants into the air. Strategy / Strategic Goal Detailed directions built upon the foundation of the sustainability vision and GHG reduction objectives that guide future policy decisions, community investments, and initiatives. Sulfur Dioxide (SO2) A molecule made of one sulfur atom and two oxygen atoms. Released both naturally and by human activity, it can transform into sulfate aerosols in the atmosphere. These aerosols can cool the Earth's surface, contribute to acid rain, and decrease visibility. Sulfur Hexafluoride (SF6) A colorless gas that mixes well with alcohol and ether but less so with water. It's an extremely potent greenhouse gas, with a global warming potential much higher than carbon dioxide (CO2). SF6 is predominantly used in electricity transmission and as an insulator in electronics. Its global warming potential is derived from the IPCC's Fourth Assessment Report (AR4). It is a potent greenhouse gas with a warming potential 23,500 times greater than carbon dioxide. T Terrestrial Carbon Sequestration The process where trees, plants, and crops absorb carbon dioxide (CO2) from the atmosphere through photosynthesis and store it as carbon in biomass (like tree stems, branches, and roots) and soil. This stored carbon creates "sinks" which counteract emissions when the absorbed carbon is greater than the released carbon over time. Therm A unit of energy equivalent to 100,000 British Thermal Units, roughly akin to the energy in 100 cubic feet of natural gas. Commonly used to gauge natural gas consumption for billing. Total Organic Gases (TOG) Organic gases that encompass both reactive and relatively non-reactive compounds, such as methane. Transparency Clear presentation of methodologies and assumptions used in an inventory so users can easily replicate and evaluate the inventory. Transparency is crucial for effective communication and consideration of information. Trend A measure of a quantity's change over time. A positive trend signifies growth, while a negative one indicates a decline. It’s expressed in percentage or fractional terms concerning the quantity's initial value. U Urban Tree Canopy The composition and traits of trees in urban settings. U.S. Department of Energy (DOE) City of Falcon Heights Climate Action Plan Glossary of Terms 15 A federal agency that oversees the nation’s nuclear infrastructure, energy policy, and funds scientific research in the field. U.S. Environmental Protection Agency (EPA) A federal agency tasked with safeguarding human health and the environment. It offers technical support for recovery planning, long-term cleanup, and environmental surveillance. This includes assistance with public health infrastructure, such as wastewater treatment plants, and addressing threats through monitoring, assessment, and decontamination efforts V Vehicle Miles Traveled (VMT): Represents the distance traveled by vehicles, be it cars, trucks, or motorcycles. Each mile is counted as one vehicle mile, irrespective of the number of passengers. Vision Zero: A strategy focused on eliminating severe injuries and fatalities from traffic accidents, aiming to provide safe and equal mobility for all individuals. Vulnerability The extent to which a system is exposed to, sensitive to, or unable to handle the adverse impacts of climate change. This encompasses: • Exposure: The presence of assets or organisms in areas potentially adversely impacted by climate change. • Sensitivity: The level at which assets or organisms are impacted by climate change. • Adaptive capacity: The capability of systems, assets, or organisms to adjust to detrimental impacts. W Water Vapor The predominant greenhouse gas present in the form of water in its gaseous state in the atmosphere. Water vapor is a natural part of the greenhouse effect. Its concentration is not significantly altered by human activities, but it amplifies the greenhouse effect due to positive feedback mechanisms. Water vapor also plays a vital role in climate regulation by forming clouds and precipitation. Weather Weather represents the immediate atmospheric conditions at a specific time and place, while climate refers to the long-term average of these conditions in a particular region over an extended period. In simpler terms, weather is what you experience outdoors on any given day, while climate describes the typical weather patterns you'd anticipate for a particular season and location. Z Zero Emission Vehicles (ZEV) A vehicle that doesn't release harmful pollutants during its operation. Examples include electric cars, hydrogen-fueled vehicles, and bicycles. These emissions, when released, can have detrimental effects on both the environment and human health. Zero Net Energy Building (ZNEB) Also known as a Net-Zero Energy Building is one that is optimally efficient, and over the course of a year, generates renewable energy onsite equal to or greater than the total amount of energy consumed onsite. Zero Waste An approach focusing on the efficient utilization of resources through responsible production, consumption, and recovery. This means products, packaging, and materials are reused and recycled without causing harm to the environment or health, and without resorting to incineration or releases to land, water, or air. Appendix D Acknowledgements We are deeply grateful for the community collaboration and input that went into this plan. Below are some of the main contributors that made the City of Falcon Heights’s Climate Action Plan possible: Climate Action Planning Team Adam Keester Resident, Environment Commissioner Colin Callahan City of Falcon Heights, Public Works Director Daryl Richard Lawrence Facilities Manager at the Bell Museum Erin McCabe Local business representative - Crocus Hill Acupuncture Georgiana May Resident, California Ave. and Northome Block Group Gregory Goodwine Ramsey County Hannah B. Lynch City of Falcon Heights, Community Development Coordinator / Planner Janelle Barlan UMN Student, Institute on the Environment Jen Schnabel Smith Resident Jennie Betchwars Resident Kristen Swanson Resident City of Falcon Heights Project Lead Hannah B. Lynch City of Falcon Heights, Community Development Coordinator / Planner Mark Miazga Resident Megan Cunningham UMN Institute on the Environment Undergraduate Leaders Program Mike Dockry Resident Olivia Siebert City of Falcon Heights, Minnesota GreenCorps Member Paula Mielke City of Falcon Heights, Council Member Pedro De Filippo Vannucci Resident, Environment Commissioner Ron Eggert Resident, Former Mayor Sammy Nelson Gibbs Farm/Ramsey County Historical Society Shirley A. Reider Resident Susan Resident D-1 | FALCON HEIGHTS CLIMATE ACTION PLAN Click here to return to TOC Climate Action Plan Advisory Group www.paleBLUEdot.llc Consultant Team Climate Action Planner: Funding for this project was provided through a 2024 State of Minnesota Pollution Control Agency (MPCA) Local Climate Action Planning Grant FALCON HEIGHTS CLIMATE ACTION PLAN | D -2 Carla Inderrieden MPCA Rachel Funke Watershed district Nate Zwonitzer Watershed district Kate Nelson University of Minnesota, Twin Cities Director of Campus Sustainability Christine Noonan State fair Elisa Rasmussen Xcel Peter Lindstrom CERTS Deirdre Coleman Center for Energy and Environment ITEM FOR DISCUSSION City of Falcon Heights, Minnesota __________________________ Item Tree Dashboard Update Description Olivia Siebert, the MN GreenCorps member, will update the Commission on her work mapping the City’s boulevard trees. She will present her final products, an ArcGIS Dashboard and online map as well as a survey tool that can be used to map future trees. Commissioners indicated interest in helping with the ongoing tree inventory project, and the survey is a way to contribute. Budget Impact None Attachment(s) None Action(s) Requested Staff requests Environment Commission discuss presentation by Olivia Siebert regarding boulevard trees and provide feedback. Meeting Date April 14, 2025 Agenda Item E-3 Attachment None Submitted By Olivia Siebert, GreenCorps Member ITEM FOR DISCUSSION City of Falcon Heights, Minnesota __________________________ Item Sustainability Fair 2025 Description Update on the Sustainability Fair: We will be partnering with Lauderdale for the event and have organized a paper shredding, electronics recycling, and textile collection event concurrently. We have assembled organizations to table at the event and speakers to give lightning talks. Budget Impact Budgeted for in SCORE grant funding Attachment(s) Sustainability Fair - April Update Volunteer Sheet Action(s) Requested Staff requests Environment Commission volunteers to help direct the outdoor collection event and staff a table for residents as well as hand out compost scrap bins. Meeting Date April 14, 2025 Agenda Item E-4 Attachment None Submitted By Olivia Siebert, GreenCorps Member Falcon Heights & Lauderdale Sustainability Fair April Update Saturday April 26, 11am – 2pm, Falcon Heights City Hall Parking lot: • Retold Recycling textile collection (requires volunteers to help sort) • Repowered electronics recycling collection • Shred Right paper shredding • Electric Vehicle demonstration – Kate Anderson City Hall: • 15-minute lightning talks: o 11:30 Russ Henry on bee lawns o 12:15 Gregory Goodwine on climate change and public health o 1:00 Peter Lindstrom on CERTs ambassadors • Environment Commission welcome tables (requires volunteers) • Tables • Climate Action Plan activity in lobby • BINGO cards for residents to fill out and redeem for a food scrap bin (while supplies last) Bicycle Chain – Bike Shop Contact: owner Topic: Bike safety, ebikes Capitol Region Watershed District Contact: Maricella Xiong, staff Topic: nonpoint source pollution, give away stickers and seed packets Home Energy Squad Contact: Gerardo Roca Topic: HES and home electrification, Xcel Energy giveaways Ramsey Co. Recycling Ambassadors Contact: Mariah Quick, ambassadors Topic: recycling, food scraps, medicine collections, household hazardous waste and the new environmental center, giveaways Ramsey Co. Master Gardeners Contact: Darren Lochner Topic: Ask a Master Gardener! (potentially information from Blue Thumb/Metro Blooms as well) CERTs Contact: Keely Rau, Bruce Topic: Air Source Heat Pumps, solar, electric vehicles, Community Energy Ambassador program, and Home Energy Guides Russ Henry/Bee Safe Minneapolis Contact: Russ Henry Topic: Bee lawns, pollinators Solar United Neighbors Contact: John Anderson Topic: Solar group buy The Good Acre Contact: Cathy Topic: CSAs, plastic free produce storage MN Tool Library Contact: Kate Hersey Topic: shared access to home repair, TOOL SWAP Gibbs Farm/RCHS Contact: Sammy Nelson Topic: nature related activities for kids, info about the farm Reuse MN Contact: Emily Noyes Topic: Waste reduction, reuse network Bell Museum Bea Chihak/Nehwoen Luogon-Bojkov Topic: natural history, Bell programs Environment Commission Table Contact ??? Topic: adopt a drain flyers, Xcel flyers, sign up for newsletter, hand out compost buckets Monarch Joint Venture Contact: Rita Morris Topic: Kid activity, monarch conservation Metro Transit Contact: Doug Cook Topic: bus routes, adopt a stop? MWMO Contact: Mary Yang Topic: water conservation? St Paul Water Contact: Joshua Topic: utility info, answer questions Volunteers needed: (10 people per 1.5 hrs, 20 people total) Activity Name/email Name/email Name/email Name/email Set up (3) 10:30-11 Sophie John Pedro Direct cars (2) 11:00-12:30 Jessica Winkelaar jwinkelaar@gmail.com Direct cars (2) 12:30-2:00 FH EC table shift 1 (2) 10:45-12:30 Adam Sophie FH EC table shift 2 (2) 12:30-2:15 Adam Pedro Lauderdale EC table shift 1 (2) 10:45-12:30 Jeff Dains Jeff.dains@ lauderdalemn.org "'Josh Keller'" joshdkeller@gmail.com Might have to cancel Lauderdale EC table shift 2 (2) 12:30-2:15 Ewa Prochniewicz ewaalicja.pn@ gmail.com Ann annesisel@gmail.com Textile shredding (4) *manual labor 10:45-12:30 John Textile shredding (4) *manual labor 12:30-2:15 Bryan Carlson carls031@umn.edu Paper shredding (1) *manual labor 10:45-12:30 Pedro Paper shredding (1) *manual labor 12:30-2:15 Monika Davis archismo@ gmail.com Snack table (1) 11:00-12:30 Paula Ann annesisel@gmail.com Snack table (1) 12:30-2:00 Paula ITEM FOR DISCUSSION City of Falcon Heights, Minnesota __________________________ Item SolarAPP+ Discussion Description SolarAPP+ is a free permitting software for cities to utilize in solar permitting. After initial setup, juridictions can spend less time with common residential solar panel systems and can devote resources to other critical needs. SolarAPP+ will handle the full permitting process for code-compliant, residential solar systems. Budget Impact None. Attachment(s) SolarAPP+ Handout SolarAPP+™ Action(s) Requested Staff requests Environment Commission discuss SolarAPP+ and if the City should consider using it as part of the solar permitting process. Meeting Date April 14, 2025 Agenda Item E-5 Attachment SolarAPP+ Handout Submitted By Hannah Lynch, Community Development Coordinator Photo by NREL 22167 Benefits of the SolarAPP+ Online Permitting Software Your jurisdiction can instantly issue permits for code-compliant, residential solar systems Solar Automated Permit Processing Plus (SolarAPP+) is a free, online platform for local governments that standardizes and automates the solar permitting process to ensure code compliance and promote safety. SolarAPP+ is available to authorities having jurisdiction (AHJs) at no cost, supported by administrative fees paid by solar installers. What SolarAPP+ Can Do for Your Jurisdiction • Automate your solar permitting plan review process • Deliver instant permits to code-compliant residential PV systems • Save plan review time for your permitting staff, allowing them to focus on more complex applications • Promote safety through consistent enforcement of building and electrical codes • Make solar energy more accessible to homeowners in your community • Be customized to fit your community’s needs and conditions • Help accelerate solar adoption nationwide. How SolarAPP+ Improves Your Permitting Process Most residential solar systems—about 70% to 80% of permits submitted—are simple and standardized, but the sheer volume of applications can be time-consuming and resource- intensive for your permitting department. SolarAPP+ helps make permit department workloads manageable and improves customer service by: • Automatically checking residential solar and storage system designs for safety and code compliance • Using standardized compliance checks to catch typos and other errors—returning corrections to the applicant instantly • Approving permits for eligible PV systems, while other systems go through a typical permitting review • Producing a project specific checklist to aid the inspection team in validating code compliance • Keeping up to date with relevant codes and certifications as new editions and technologies are adopted—reducing the need to constantly retrain staff on new codes. NREL is a national laboratory of the U.S. Department of Energy Office of Energy Efficiency and Renewable Energy Operated by the Alliance for Sustainable Energy, LLC NREL/FS-6A20-90815 • August 2024 How SolarAPP+ Works Piloting and adopting SolarAPP+ is easy. Installers pay a small administrative fee per project to support SolarAPP+ updates and long-term availability. Onboarding is supported by NREL and Underwriter Laboratories (UL)—and is customized to suit your jurisdiction’s unique needs. The software will always be offered to AHJs at no cost to use for plan review, approval, and fee payments. You can use SolarAPP+ as a stand-alone product or integrate it with existing software and inspection platforms. Today, SolarAPP+ can permit solar and solar-and-storage systems. In the future, SolarAPP+ will incorporate other technologies, such as electric vehicle charging equipment and other smart home technologies. SolarAPP+’s Proven Performance The National Renewable Energy Lab tracks the performance and impact of SolarAPP+ each year. In 2023, SolarAPP+ provided these benefits. • Staff time savings: SolarAPP+ saved approximately 15,400 hours of permitting department staff time. • Fewer permitting-related delays: SolarAPP+ eliminated over 150,000 business days in permitting-related delays. • Increased platform adoption rates: 97 local governments had publicly launched the SolarAPP+ platform by the end of 2023, and 70 more were in the piloting stage. Another 149 were testing SolarAPP+ or were in the onboarding phase. When rooftop PV installation hurdles are simplified, homeowners are happier and growth compounds—and local governments benefit from greater resilience, flexibility, and economic development. How To Get Started With SolarAPP+ To learn more and start piloting SolarAPP+ in your jurisdiction, view our 5 Steps to SolarAPP+ Adoption fact sheet or register at solarapp.nrel.gov/register. SolarAPP+ can be customized to meet a community’s needs, including: • Fire Bulletin Appendix • Allow Main Panel Upgrades • Allow Main Breaker Derates • Enable electrical diagrams • Block addresses for permitting • Allow for local ordinances. List of AHJs Using SolarAPP+ At the end of 2023, there were 167 communities across 12 states using SolarAPP+. See the latest status of SolarAPP+ adoption, at: https://help.solar-app.org/article/108-where- is-solarapp-available SolarAPP+ is in use by communities in Arizona, California, Colorado, Connecticut, Illinois, Iowa, Maryland, Oklahoma, Texas, Virginia, and Washington. “ The process the SolarAPP+ gives us on the inspection sheet is quite intensive and it’s great. Our inspectors love it and all the contractors that are using it, are doing better inspections. They are passing a lot better. They are making sure that everything is grounded like it’s supposed to be. — Kimberly Norman-Rosedam, CBO, Town of Guilford, CT “ We’re looking at a 50% reduction in the solar permits that we have to touch and process.” — Carla Blackwell, director of Pima County, AZ Development Services What Communities Are Saying About SolarAPP+