Explore awards
Use the filter menu and interactive map to explore the past competitions offered and grants awarded through the Environmental Literacy Program.
To learn more about project findings and outcomes, view the summaries of our grantees’ summative evaluation reports.
R4Ed: Rigor, Relevance, and Relationships in Resilience Education
Rigor, Relevance, and Relationships in Coastal Louisiana Resilience Education (R4Ed) helped high school students in coastal Louisiana learn through data analysis about the science of hurricanes in a warming world, learn through local stories about impacts of hurricanes, and then identify resilient actions that could help keep their households and their communities safe. To accomplish this the UCAR Center for Science Education worked with the NCAR Capacity Center for Climate and Weather Extremes and the South Louisiana Wetlands Discovery Center to develop a high school curriculum called Hurricane Resilience. During 20 days of instruction, students make connections between the science of hurricanes, how they affect their community and region, and how we can plan for a more resilient future. Making local connections, students develop an understanding of 1) the risks that their community faces now and in the future due to hurricanes and tropical storms, 2) how sea level rise increases the risk, and 3) how our actions can help us be less vulnerable and more resilient. The curriculum unit aims to empower high school students to have a voice in resilience planning and understand the relationship between the science of hurricanes and the local impacts these storms have on people and places. Hurricane Resilience is available online and adaptable for high schools in any coastal location where hurricanes pose a threat. The R4Ed project worked with science curriculum coordinators in Terrebonne and Lafourche Parishes, Louisiana, to ensure that the curriculum would meet the needs of their districts. We pilot tested the curriculum in three high school environmental science classes at South Terrebonne High School in Houma, Louisiana. The final curriculum was modified to work for in-person, hybrid, and virtual learning formats during the pandemic. The implementation was scaled up to serve 600 students instructed by 12 teachers in Terrebonne and Lafourche Parishes, LA, during the 2020-2021 school year and then approximately 1000 students during the 2021-2022 school year. Teacher professional development workshops instructed virtually when Covid-19 risk was high and in-person when risk was lower, oriented teachers to the lessons. Over the course of this project, Hurricane Resilience reached 1658 students and approximately 80 educators. In addition, the project reached 220 members of the public during a community event in 2019. Evaluation results indicated that resilience was not part of the environmental science curriculum prior to Hurricane Resilience and 92% of the teachers in this project had never addressed resilience in their environmental science curriculum before this project. Teachers instructing Hurricane Resilience indicated that the curriculum engaged students in concepts that impact their daily lives and the future of their community. We continue to support implementation of Hurricane Resilience in area schools and find ways to build on this foundation, assisting young people as they develop decision making strategies that will help them navigate risk and decrease vulnerability as related to hurricanes, climate change, and sea level rise in the rapidly changing Louisiana Bayou.
Citizen Science, Civics, and Resilient Communities (CSCRC)
The "Citizen Science, Civics, and Resilient Communities” (CSCRC) project led by the Museum of Science, Boston in partnership with Arizona State University, Northeastern University, SciStarter, and the National Informal STEM Education Network (NISE Net), engaged thousands of public participants around the United States in participatory data collection and community deliberation about four climate-related hazards: heat waves, sea level rise, extreme precipitation, and drought. The aims of the project were to increase resilience to extreme weather and environmental hazards through the inclusion of community-generated data, local knowledge, and community values into civic planning, and to increasing capacity among science centers and informal educators for including publics in resilience planning and data collection. The project formulated, iterated, and evaluated a science-to-civics model that included agenda-setting, decision-making and policy forming phases. These activities were developed and implemented by educators at 30 US science centers in collaboration with local resilience planners. Groups of participants in each community collected, analyzed, and shared data about locally relevant hazards; learned about vulnerabilities through visualizations of geospatial data; participated in deliberative, participatory resilience planning and shared perspectives about resilience strategies and their societal and environmental trade-offs; formulated community resilience plans that brought forth diverse perspectives; and presented their findings and recommendations to resilience planners and publics. Participants contributed community-generated data such as urban heat island maps, precipitation data from rain gauges, or documented extreme events through photos of their communities. These data were visualized through StoryMaps, exhibited at local libraries and fairs, and used to facilitate community discussions about the tradeoffs of proposed resilience strategies. Many of the deliberation and participatory science activities pivoted to online formats in response to the pandemic. These digital engagement activities provided new and unanticipated challenges, but also new opportunities connect project participants and capture participant engagement in powerful ways. Our project evaluation found that citizen science and Forum participants increased their knowledge around climate hazards, resilience strategies and their tradeoffs. Participants also increased their confidence and interest in engaging with climate topics, including ways to take action around community climate hazards, contributing to citizen science efforts, and contributing to public policy. Museum professionals found that the project positively impacted their ability to implement science to civics activities, felt supported by the trainings and materials, and planned to continue implementing these programs provided they had continued access to materials, tools, and experts. Many of the project materials are freely available for download at nisenet.org/cscrc and the local project portals documenting the citizen science activities can be found at scistarter.org/noaa.
Resilience from the Youth Up
As climate impacts ratchet up across the United States, the Great Lakes region tends to fly under the national radar. While the Great Lakes do not experience hurricanes, rising sea levels, or large-scale wildfires, the local climate has become increasingly erratic in recent years. The region, however, is one of the most unprepared in the country to cope with these impacts. A recent Grosvenor report (2014) on climate resilience among 50 global cities ranked Detroit last among 11 U.S. cities for adaptability and only better than three cities for overall resilience, which incorporates both climate vulnerability and adaptability factors. Of U.S. cities with more than 100,000 residents, Detroit has the highest percentage of African-American residents (80.7%, U.S. Census 2016). Still recovering from bankruptcy, the city also has a 39% poverty rate, which impacts over 56% of children (ibid). These socio-economic factors, coupled with other environmental justice concerns, such as a centrally located incinerator and an asthma rate of 15.5% among adults resulting in over 3,000 hospitalizations annually, make Detroit residents particularly vulnerable to climate impacts. This project will address the urgent need to increase resilience by working with high school students and teachers in Detroit and southeast Michigan to increase their awareness of climate change and develop projects that help their schools and neighborhoods become resilient to increased occurrence and intensity of heat waves, storm events, and flooding. Using NOAA assets, including GLISA localized climate data and Sea Grant outreach and education expertise, high school students and teachers will partner with climate scientists to explore local climate impacts firsthand and to develop resilience strategies and projects that protect vulnerable households and neighborhoods and contribute to broader sustainability initiatives. The City of Detroit seeks this involvement as it ramps up a new Office of Sustainability and seeks proposals to develop the city's first Sustainability Framework. The effort is a partnership with EcoWorks, Great Lakes Integrated Sciences + Assessments (GLISA), Michigan Sea Grant (MISG), Southeast Michigan Stewardship Coalition (SEMIS), Eastern Michigan University, Civic Research Services, Inc., and the National Oceanic and Atmospheric Administration (NOAA). In each of the next three years, 200 students from various high schools in the Detroit and Ypsilanti areas will participate in weekly activities related to the grant. The four primary objectives of the program include: 1) Engage students in assessing and quantifying climate vulnerabilities of their schools, neighborhoods, and surrounding community. 2) Using a place-based education (PBE) model, prepare educators to engage students in creating plans and completing projects that increase community resilience. 3) Empower high school students to teach residents about local climate impacts and increase understanding of resilience strategies to mitigate extreme weather events or other environmental hazards. 4) Contribute to the completion and implementation of local sustainability and climate action plans in Southeast Michigan.
CREATE Resilience: Community Resilience through Education, Art, Technology, and Engagement
CREATE Resilience: Community Resilience through Education, Art, Technology and Engagement, is a multi-disciplinary collaboration between youth and community to 1) improve environmental hazards literacy, and 2) increase engagement in resiliency actions by youth and adult residents in the Lehigh Valley region of Pennsylvania. CREATE Resilience is designed to increase community knowledge about weather and climate science, risks from local hazards, and strategies for hazard mitigation, while co-creating a vision for community resilience. Developed by Nurture Nature Center (NNC) in Easton, PA, the four-year project will work with local, state and federal partners in three hazard-prone communities in the Lehigh Valley (Easton, Bangor and Wilson areas). Hazards, particularly weather-related hazards including flooding, have had major impacts in these communities historically and recently, causing extensive damage to property and disruption to community services. Damaging river flooding along the Delaware River in 2004, 2005 and 2006 highlighted major planning and safety challenges for many municipalities in the area with high flood risk, and a recently updated regional Hazard Mitigation plan highlighted other hazards – as well as the need for public education about hazards and mitigation. CREATE Resilience’s advisory board will work with NNC to bring education and engagement events to teach the science of these hazards, as well the household and community-level strategies and tools available for resilience. Partners include the National Weather Service (NWS) Middle Atlantic River Forecast Center and Mt. Holly, NJ Weather Forecast Office, and Weather Prediction Center, as well as LV Planning Commission, Northampton County Emergency Management Agency, LV Community Foundation, Lafayette College, and FEMA Region 3 Mitigation Division. In years 1 and 2, the project will form CREATE Youth Ambassador teams, in which student interns from area high schools will meet NWS meteorologists, engage in community storytelling events, develop local hazard and resilience tours, and learn from climate and other scientists about hazards and strategies for resilience. Ambassadors will also develop and lead programming for community residents. Simultaneously, residents will participate in active-learning education events, dialogue forums, arts-based activities, technology-based programs using NOAA assets, and hands-on preparedness activities. Each community will build a collective understanding of local hazards and mitigation strategies, and co-create a vision for resilience, represented in traveling visual artist-designed murals in the third year of the project. This education and shared vision will build community support for planning and resilience and help households in making better preparedness decisions. Dissemination through Science on a Sphere® and guidebooks will share the replicable model with other organizations and communities, extending the reach of the project. Close cooperation with NWS offices helps the project meet key goals of NOAA’s Education Strategic Plan, related to safety/preparedness and a science-informed society. Through public events and print materials, the project will showcase and interpret NOAA-related science and data with area residents, while creating collaborative learning opportunities for youth and community to interact with NOAA scientists. CREATE Resilience also engages youth and adults in preparing for hazards, and in multi-generational learning to improve community awareness and involvement in preparedness and mitigation.
Empowering Climate Change Resiliency through Education in an Underserved Community
Understanding climate change and its exacerbating effects on local environmental phenomena (e.g., increase in frequency and/or intensity of drought, ocean acidification, water shortages, degraded fisheries) and how to create resiliency is critical for underserved communities as they are disproportionately impacted by these hazards and yet, have the least capacity to actively respond. To address this issue, Ocean Discovery Institute and its partners will build understanding of climate change and impacts on local hazards, human-nature interactions, and individual and community capacity for resilience through place-based education in the underserved community of City Heights, San Diego, CA. This project, titled “Empowering Climate Change Resiliency through Education in an Underserved Community,” will involve a wide range of partners, including California Sea Grant, the California Nevada Climate Applications Program, NOAA’s Geophysical Fluid Dynamics Laboratory, Cabrillo National Monument, San Diego Canyonlands, RECON Environmental, Inc., and the San Diego Unified Port District. Project activities encompass the design, piloting, and implementation of multi-grade level, integrated curricula that incorporate hands-on student climate science research, innovative solution building, and teacher professional development. This project will serve 1,500 middle school students annually and is expected to increase students’ understanding of scientific concepts and processes and human-nature interactions, improve their ability to make science-informed decisions, and contribute to local resilience efforts.
U.S. Virgin Islands Storm Strong Program
Under leadership from the University of the Virgin Islands, the Virgin Islands Marine Advisory Service, and local, non-profit, long-term, 2017 storm recovery groups, this 5-year project will create the U.S. Virgin Islands (USVI) Storm Strong Program. To date, minimal efforts have been made to engage the USVI community in hurricane education and preparation. As a result, USVI communities face significant, but often preventable, storm risks. This is the Territory’s first sustained, community-based, hurricane hazard preparedness, and community leadership building program. The USVI Storm Strong Program will engage underserved and underrepresented middle- and high-school youth and their families on all of the Territory’s main islands - St. Thomas, St. John and St. Croix - in a program modelled after the U.S. Climate Resilience Toolkit framework. Youth and their families will: (1) explore the science and hazards associated with hurricanes, (2) assess their communities’ vulnerabilities and associated risks, (3) evaluate personal and community assets and options to increase resilience, (4) prioritize and plan for events occurring before, during, and after a storm, and (5) take action, in this case, through Community Transfer Projects, which will turn the information gained through the Program into local actions to increase individual and community resilience, sharing knowledge and actions with the broader USVI community and beyond. Through this training, ~400 USVI youth and their families will be empowered as environmental leaders and change agents within their communities and important insights will be learned as to how best to engage underrepresented and underserved groups in hazard preparedness. Creation of the USVI Storm Strong Program is timely, given the significant impacts resulting from Hurricanes Irma and Maria, two Category 5 hurricanes that devastated the USVI in September 2017. These storms provide a window of opportunity to bring together partners from federal, territorial, non-governmental, academic, and the private sector, to develop a strategic, cohesive, long-term, high-impact, community-based program to improve environmental literacy and extreme weather hazard preparedness in the Territory, goals that align with the mission of NOAA’s Office of Education.
Environmental Literacy for Alaskan Climate Stewards (ELACS)
The Environmental Literacy for Alaska Climate Stewards (ELACS) project served 84 K-12 educators and 1,080 Alaskan students in predominantly Alaska Native coastal villages. The project provided opportunities to build understandings of how climate change impacts local environments, increase overall climate literacy, and contribute to community resilience. Participants were primarily from the Chugach School District and the Kenai Peninsula Borough School District, both located in the southcentral region of Alaska. Students and teachers in the Aleutian Region School District, Nome City Schools, and the North Slope Borough School District (southwestern, northwestern, and northern Alaska, respectively) participated to a lesser extent in novel learning experiences made available through collaborative partnerships that emerged during the grant period. The project focused on three areas: teacher professional development, classroom instruction, and community engagement. Professional development included training in project-based learning and co-teaching/coaching sessions with master teachers. Classroom instruction engaged students in meaningful, innovative, place-based, project-based learning, and citizen-science activities focused on site and community needs. Students monitored their local environments, built or otherwise used ocean observation systems, collected data, and represented their new knowledge through presentations and art. Significant outcomes included student work on the relationship between phytoplankton and salmon conservation in Chenega Bay, a Living History Project that engaged community members and elders with traditional ecological knowledge in Tatitlek, and engagement in weather and environmental monitoring plans for the community of Whittier (potentially threatened by tsunamis generated by unstable slopes in a nearby fjord). Students shared active research regarding impacts and available resources. ELACS aligned with and supported NOAA’s educational mission by helping the target populations understand and predict changes in climate, weather, oceans, and coasts. This project promoted students’ environmental stewardship and a deeper understanding of a changing environment at both local and global levels. Throughout the four-year project, students and teachers worked with scientists and experts in education, climate change, and marine science using project-based learning approaches and educational technology. A notable (but not exhaustive) list of partners included researchers from NOAA’s Kasitsna Bay Laboratory, the College of Fisheries and Ocean Sciences and the International Arctic Research Center (both at the University of Alaska Fairbanks), the Polar Science Center (University of Washington), Ground Truth Trekking, and the Center for Alaska Coastal Studies. Educational consultants included STEMisEd, Teknikio, NexMap, Build-A-Buoy, and EcoArt Expeditions. Corporate and non-profit partners included WeatherFlow, Inc., Batelle, Inc., Cook Inlet Tribal Council, and Alaska Science Teachers Association.
Climate Strong—Building Tribal Youth Leadership for Climate Resiliency
Fond du Lac Tribal and Community College in partnership with the Fond du Lac Band of Lake Superior Chippewa, Great Lakes Indian Fish and Wildlife Commission, 1854 Treaty Authority, University of Wisconsin Extension’s G-WOW program, and Lake Superior Estuarine Research Reserve are proud to provide the Climate Strong-Building Tribal Youth Leadership for Climate Resiliency program. Our three-year project aims to increase the knowledge and readiness of middle to high school students to deal with the impacts of extreme weather and environmental hazards that face the Ojibwe Ceded Territories (Minnesota, Wisconsin, and Michigan) and build capacity for increased climate change community resiliency curriculum in the classroom. Climate change impacts everyone, but for indigenous peoples it threatens culturally significant traditions, such as wild rice harvesting, that relies on sustainable fish, plant, and wildlife resources. These resources are critical for subsistence, spiritual and cultural needs, and treaty rights. Culturally relevant, place-based education is an important tool to involve students, in particular, underrepresented students, in developing critical thinking skills to assess the issue of community resiliency to extreme weather events and engaging in action to help resolve it. In order to achieve our objectives, we will aim our educational efforts toward youth first, as well as reaching the communities we serve. Each year, six residential youth camps (18 total) will be hosted within the Ojibwe Ceded Territories. Each three-day camp will be focused on investigating issues of community resiliency, adaption, and mitigation associated with increasing extreme weather events as well as natural environmental hazards. Camps will use place-based, experiential lessons to teach resiliency issues demonstrated by climate change effects on Ojibwe culturally important natural resources. Our project will train formal and informal educators throughout the Ojibwe Ceded Territories on how to use indigenous climate curriculum using tribal traditional ecological knowledge and NOAA assets to investigate community climate resiliency issues. Using both teacher “train the trainer” workshops and our camps, this project will create a network of formal K-12 and informal educators trained to become leaders in providing culturally relevant climate resiliency outreach to students. We will increase community resiliency literacy through six community outreach events each year (18 total) that will highlight resiliency issues facing our region and the research being done on landscape and ecological vulnerabilities through NOAA and tribal assets. Our goals are increased community resiliency literacy and adaptation of stewardship behaviors that reduce climate change impacts and increases adaption and mitigation behaviors by our participants. These behaviors will help increase stewardship practices reducing extreme weather impacts affecting the sustainability of culturally relevant resources, thereby preserving important cultural, spiritual, subsistence, and treaty rights practices.
HEARTForce: Hazard Education, Awareness & Resilience Taskforce
Communities in Colorado are increasingly experiencing major disruptions from environmental hazards, such as wildfire, flood, and drought. With this rise in hazardous events, there is a pressing need for communities to increase their resilience. An interdisciplinary team from the Cooperative Institute for Research in Environmental Sciences (CIRES) Education & Outreach Program at the University of Colorado at Boulder has developed and implemented an innovative, action-oriented youth engagement project that targets rural Colorado students, teachers, and communities. Our engagement model 15 empowers youth i) to envision community resilience through immersive scenario-based role play based using a solid understanding of the relevant science, ii) to learn about natural hazards through engaging place-based lessons, iii) to initiate conversations about hazard preparedness from within communities, and iv) to develop and implement student-led resilience action projects and participate in community resilience expos. A needs assessment disseminated to Colorado teachers guided the project team in the development of all instructional materials and allowed for customizing the content to teacher needs. The project team developed three units (one of wildfire, flood, and drought) for middle and high school students that consist of three parts: place-based data-focused lessons to introduce the hazard, a scenario-based role-play game with a focus on youth empowerment, and a design challenge for students to develop an idea for a resilience action project. Teachers can choose to teach any or all parts and invite community resilience stakeholders and practitioners to share their work with their students, and support students in designing and implementing action projects. Some teachers and students chose to host a Community Resilience Expo, where they invited the public to learn more about the hazard and what resources exist in the community to help prepare for the hazard. The project aimed to accomplished the following three objectives: 1) Increase Colorado secondary teachers’ knowledge and confidence to teach about local natural hazards, and to facilitate discussions about community resilience; 2) Increase Colorado youth’s understanding of natural hazards, their community’s vulnerability, and their involvement in resilience planning efforts, and 3) Enhance the capacity and empowerment of young people in Colorado to engage in dialogue with their peers, families, and community stakeholders about community resilience issues and identify, develop, and implement resilience actions. The project evaluation explored the efficacy of the program model and studied the impact of the project activities on students and teachers. The project filled a critical gap in Colorado’s resilience planning which does not include teachers and youth. The project was guided by partners from the NOAA RISA program Western Water Assessment, seven NOAA science advisors, and was implemented together with over 40 community partners, school partners and collaborators from across Colorado. Over the course of the four-year program, the project trained and supported 88 teachers, engaged nearly 2,000 students, and resulted in 9 Resilience Expo events across rural Colorado.
AMS/NOAA Cooperative Program for Earth System Education
The Cooperative Program for Earth System Education (CPESE) is a joint education project led by the American Meteorological Society (AMS) in collaboration with the National Oceanic and Atmospheric Administration (NOAA). The project aims to share knowledge about weather, climate, oceans, and coasts with pre-service and in-service teachers, K-12 students, and graduate students. The project's objectives align with three key goals of the 2021-2040 NOAA Education Strategic Plan: fostering a Science-Informed Society, promoting a Ready, Responsive, and Resilient community, and cultivating a Future Workforce. CPESE's major objectives include providing nationwide professional development (PD) for K-12 educators, offering fellowships for graduate students in atmospheric, oceanic, and hydrologic sciences, and undertaking a planning year to reimagine AMS's model and methods for teacher PD course delivery. This planning year will focus on reaching more underserved teachers, schools, and climate-vulnerable communities. The long-term goals of CPESE are to establish a diverse community of practice among educators who are weather, ocean, and climate literate and adept at accessing NOAA data, and to promote retention and growth of graduate students in NOAA mission-related sciences, leading to careers in NOAA-mission disciplines. Key project activities include administering fellowships to 2-5 graduate students annually, offering DataStreme Atmosphere and Ocean as well as Project Atmosphere for graduate credit in partnership with Pennsylvania Western University (PennWest), and awarding microcredentials, such as the PennWest/AMS DataStreme certificate and/or Certified AMS Teacher distinction, to teachers who complete multiple AMS courses. DataStreme courses are offered virtually each fall and spring semester to approximately 70 teachers per term, while Project Atmosphere reaches 16-20 NOAA-supported teachers each summer through online coursework and a one-week workshop at the NWS Training Center. AMS updates DataStreme course materials annually and the Current Studies investigations weekly. In Year 2, AMS will plan for revisions to make Current Studies more dynamic and media-driven and update Project Atmosphere with newer maps, data, NGSS integration, and the 5E model of instruction. A network of DataStreme Mentor Teams supports AMS courses by recruiting teachers, providing learning support, participating in small group discussions, and offering grading input to PennWest faculty members. Mentors receive honoraria, continued PD opportunities, and assistance in participating in state or national educator conferences. In Year 2, a subset of mentors will form an advisory group to help re-envision the AMS course model, with the support of DEI experts and instructional designers (IDs). As AMS modernizes its course model, the project's external evaluator will revise the programmatic logic model and evaluation plan to include evaluative questions connecting participant demographics with teacher and school impact. Key program outcomes include equipping DataStreme mentors with the knowledge, skills, confidence, and motivation to serve effectively, developing similar capacities for teacher participants (including classroom content application and knowledge transfer to students, peers, and administrators), increasing the number of teachers from underrepresented groups and their impact on underrepresented students, establishing an educator community of practice capable of understanding and applying NOAA-related science content (fostering a more ready, responsive, and resilient society that promotes climate justice), preparing graduate students for careers in disciplines that support NOAA's mission, and strengthening NOAA-AMS and external partnerships.
Brockton Kids Lead the Way: Enhancing Stewardship and Climate Resilience through Outdoor Education
Manomet will use NOAA funding to boost climate resilience and environmental stewardship in Brockton, Massachusetts, an incredibly diverse but impoverished city and designated Environmental Justice community with a rich history. Brockton is highly vulnerable to flooding, pollution, and water supply disruptions related to climate change. Brockton is also a city with a long history of resilience in the face of economic challenges and a thirst for empowerment and opportunity. Brockton schools were hard-hit by COVID-19, and are facing a critical need for support, resources, and academic enrichment. Manomet believes education is one of the best tools to create long-term change. By increasing access to nature, encouraging students to become environmental stewards through outdoor learning, and building climate resilience literacy, Manomet aims to empower the next generation of conservationists to help solve today’s complex challenges. In partnership with Wildlands Trust, Connecticut Sea Grant, and TERC, Manomet will: 1) develop environmental stewardship by creating outdoor learning spaces on school grounds and providing teachers with curricular tools and training for use; 2) empower elementary students and teachers through outdoor environmental education, engaging in stewardship action to build green infrastructure, and civic engagement, and; 3) build climate resilience literacy in elementary school children, teachers, and community members through education, civic engagement, and collaboration. Brockton Kids Lead the Way envisions elementary students and their teachers as community leaders and ambassadors for environmental stewardship, during a time of increased civic investment and interest across Brockton in green spaces, public health, and community resilience.
Climate Resilient Flint: Building Community-Driven Climate Resilience through Hyperlocal Science-to-Civics Learning
Climate Resilient Flint seeks to develop climate resilience literacy in Flint, Michigan through neighborhood placemaking projects and green workforce education and training. High urban blight and low climate literacy are expected to leave many of the city’s residents susceptible to anticipated rises in regional summer temperatures and heavy precipitation events. Building on evidence illustrating that social cohesion, education, and a sense of place are key factors in communities’ abilities to adapt to outside shocks or stressors, this project aims to foster climate resilience by engaging underserved and vulnerable neighborhoods in a three-year science-to-civics learning program. Priority neighborhoods will participate in organized deliberative forums to discuss regional climate changes and local impacts before developing plans to repurpose vacant neighborhood lots into spaces that use passive cooling and stormwater management strategies to reduce vulnerability to heat and precipitation. As community members become aware of the connections among climate impacts, climate resilience, and community wellbeing, they will develop the knowledge to further their civic engagement in local social, sustainability, environmental, and climate issues. Additionally, Climate Resilient Flint will develop and teach an environmental literacy and job readiness curriculum for returning citizens with barriers to employment. The Empowerment Through Innovation and Knowledge (EPIK) education program will help participants build a holistic job-seeker profile by complimenting hands-on learning of green infrastructure skills with place-based environmental literacy education embedded within local and regional climate contexts. Through the EPIK curriculum, participants will develop the skills and credentials to advance their competitiveness in Michigan’s green infrastructure job market. With the goal of reducing differential access to education, knowledge, and resources, this project reflects NOAA’s education mission to further equitable environmental literacy and climate resilience capacity by employing active learning and knowledge co-production. Climate Resilient Flint is a collaborative effort between Kettering University, Environmental Transformation Movement of Flint, M.A.D.E. Institute, Neighborhood Engagement Hub, Genesee Conservation District, and NOAA’s Office of Education and Climate Program Office.
Participatory Education in Faith Communities for Climate Resilience
Creation Justice Ministries is partnering with Interfaith Power & Light chapters in Maryland, Virginia, and North Carolina on the project “Participatory Education in Faith Communities for Climate Resilience.” Coastal faith communities can be key assets to building resilience in their communities, but often do not have the resources or investment from resilience agencies to build the necessary environmental literacy. The goal of this project is to create networks of faith communities that are educated on the realities of climate change and able to serve as hubs of social and physical resilience for their communities – helping them better weather the physical, social, and spiritual storms of the climate crisis. This project will engage faith communities in social learning on the connections between their experience of extreme weather and the science of climate change; facilitate a series of workshops in which faith communities engage with local scientists, planners, and decision-makers around climate resilience to extreme weather and climate change; and guide congregations through a resilience implementation and educational project. The project team will work with predominantly Black, Indigenous, and other faith communities of color in Mathews County, VA, Wicomico County, MD, and Beaufort and Pamlico Counties, NC. The outcomes of this project are (1) increased social cohesion and networks of accountability between local faith communities, planners, and decision-makers, (2) faith community members educated with the knowledge, skills, and confidence to reason about the interaction of human and natural systems globally and locally, with a specific focus on the inequities of climate change vulnerabilities, (3) faith community members empowered and prepared to educate their communities about climate impacts, participate in civic processes around climate adaptation, mitigation, and resilience, and serve as trusted community leaders when climate disasters occur, and (4) congregations with the infrastructure to continue integrating resilience and climate change education in the life of their church and local community. This project is integrally connected to NOAA’s mission of science, service, and stewardship. By intersecting the service- and stewardship-oriented work of faith communities with the science of resilience agencies and local universities, members of faith communities can be more resilient and adaptive to the risks and hazards associated with climate change. Other project partners include NOAA Regional Climate Services Center, NOAA Regional Integrated Sciences and Assessments program, North Carolina Division of Coastal Management, North Carolina Office of Recovery and Resilience, Mathews County Board of Supervisors, Maryland CoastSmart Communities, Duke University Marine Lab’s (DUML) Community Science Initiative, Environmental Finance Center (EFC) at the University of Maryland, and Virginia Institute of Marine Science (William & Mary).
Nothing Without Us: Building Environmental Literacy, Resilience, and Sustainability in DC through a Multi-Partner, Community-Led Approach
The FH Faunteroy Community Enrichment Center will lead intergenerational efforts to build climate resilience and address complex environmental problems with Ward 7 residents through a model built on self-determination and collaboration with public and private partners. The project’s geographic focus is on Ward 7, home to not only the majority of single-family homes in Washington, DC’s 100-year floodplain, but also a predominantly Black population that faces increased climate vulnerability due to socio-economic stressors and legacies of systemic racism. The Ward 7 Resilience Hub Community Committee is the lead project partner, with collaborators including the DC Department of Energy and Environment, Harrison Institute for Public Law at Georgetown University Law Center, NOAA Chesapeake Bay Office, and additional support from NOAA Regional Integrated Sciences and Assessments Program. Project goals, centered around Ward 7 residents, are to: (1) reshape workforce development programs and initiatives; (2) increase environmental literacy and civic participation; and (3) create community-driven decision-making processes and structures that guide the development of resilience hubs in the District. The full project title is “Nothing Without Us: Building Environmental Literacy, Resilience, and Sustainability in DC through a Multi-Partner, Community-Led Approach.” Activities will include workforce development programming, environmental education, and convenings for and with the partner organizations to develop promising practices for community resilience hubs. This collaboration will build a climate-ready workforce among Ward 7 residents, support community action and advocacy, and position residents to be leaders in the implementation of the District’s sustainability and climate plans, including Climate Ready DC, Resilient DC, and Sustainable DC 2.0.
Building Heat Resilience in Southwestern Virginia through Education
Of all weather-related disasters, heat waves cause the most deaths every year in the United States and climate change is already increasing their frequency, duration, and intensity. In urban areas, heat exposure and risk are highly related to the built environment and the everyday lived experiences of urban residents. Building heat resilience—the capacity for communities to adapt to and cope with higher temperatures and heat waves—therefore necessitates a comprehensive and place-based approach that includes education about the factors affecting risk and vulnerability, consequences of heat on health and livability, as well as potential long-term and short-term actions that residents can take to reduce risk and vulnerability. In this project, we will promote environmental literacy and strengthen climate resilience in Southwest Virginia by building a cross-sector urban heat resilience environmental literacy network that includes: the public education system, students and families, community health professionals, and City government. The project is led by Carilion Clinic in partnership with Virginia Tech, Virginia Clinicians for Climate Action, and Roanoke City Government. Through these partnerships, we will build resilience pathways for dealing with long-term higher temperatures and emergency heatwaves using combined urban planning and public health approaches. We will extend and expand Virginia Tech’s previous engagement with Roanoke youth (2-week summer STEM and Heat Resilience summer school program for middle school students) to involve the community more broadly to co-produce neighborhood-specific heat mitigation plans that address resident concerns in Roanoke and improve environmental literacy around the problem of urban heat as both an acute and chronic issue. We will work with teachers and administrators in the Roanoke City Public School system to institutionalize the STEM/urban planning-based curriculum we develop so that more children can benefit from it. Using youth education as an entry to engage the broader community, we will also host a family-based STEM-Urban Planning Family Summit, which will inform residents about urban planning processes and how changes to urban landscapes can make neighborhoods cooler, more comfortable, and more resilient to rising temperatures. We will also build capacity among health professionals and integrate them into community planning by: educating and enlisting the support of health professionals and Carilion’s community outreach network to work with community groups and families; engaging three Carilion clinicians to participate in an eight-hour educational training to learn more about impacts of climate and health in the region and provide tools for educating other clinicians and community; and training Carilion’s 37 Community Health Educators and Community Health Workers and developing community education/outreach materials on climate change impacts on health with a focus on heat illness. The urban planning and public health components to increasing heat resilience will come together in a culminating Heat Resilience Fair, at which participants in our program (students, families, residents, clinicians, health workers, and City government officials) will present ideas and solicit feedback from the broader community. The solicited ideas will be incorporated into the City’s planning processes, enabling formalization of long-term goals for public health and the built environment with respect to rising temperatures.
Newark Resilient Solar Initiative
Solar One and The Newark Office of Sustainability are launching the Newark Resilient Solar Initiative, which utilizes the construction and deployment of resilient solar systems as a catalyst for education—both in the classroom and in the most vulnerable communities in Newark. The Initiative responds to the need for high quality career and technical education and work-based learning opportunities in Newark Public Schools and community engagement around climate resilience for people in low-income, largely immigrant, and predominantly Black and Latino communities in Newark who are highly vulnerable to flooding and extreme heat. Resilient solar systems, including solar plus battery storage, build community resilience to climate hazards by enabling Newarkers to access electricity during a power outage. The systems will be housed at accessible locations such as community gardens and are built by up to 52 Newark high school interns who receive solar workforce training, strengthening their career readiness and leadership skills. Each resilient solar system is unveiled at a community engagement event that features NOAA assets to build collective environmental literacy, emergency preparedness, and social cohesion in alignment with local resilience goals—reaching up to 200 community members. In addition, The Initiative trains 9 teachers and 800 Newark Public School students in climate literacy and solar workforce training, which can jumpstart a lifelong career in renewable energy, a field with high income potential. The Initiative is guided by an advisory committee composed of community members, community-based organization partners, and environmental justice leaders.
HEARTForce: Resilient Colorado
Communities in Colorado are increasingly experiencing major disruptions from environmental hazards, such as fire, flood, and drought. Low-income housing neighborhoods and vulnerable community members in under-resourced rural areas are often disproportionately impacted by these hazards. With the rise in hazardous events across the state under a changing climate, there is a pressing need for communities to become more resilient through better preparation and planning. The Hazard Education, Awareness and Resilience Task Force (HEART Force) program, facilitated by the NOAA Cooperative Institute for Research in Environmental Sciences (CIRES) Education & Outreach group at CU Boulder, empowers rural secondary students and teachers to act as the change agents to build community resilience against natural hazards. With continued funding, we will continue to support teachers statewide to implement HEART Force curriculum, a place-based curriculum that uses authentic data sources, scenario-based role-play games and the Earth Force process to inspire civic action. We will also be supporting four classrooms across Colorado to go deeper with the curriculum through a quarter or semester-long elective course, by selecting a vulnerable neighborhood to partner with and planning action steps together with more support from CIRES staff, community partners, and local emergency managers.
Nos Quedamos: Youth-led Activation of Community Climate Resiliency Hubs in Melrose Commons
WE STAY/Nos Quedamos, Inc. (NQ) is a leader in community-driven, sustainable development in Melrose Commons, a historically marginalized and disinvested community in the South Bronx, NY.
WE STAY/Nos Quedamos, Inc. (NQ) is a leader in community-driven, sustainable development in Melrose Commons, a historically marginalized and disinvested community in the South Bronx, NY. Building on our 30-year history of organizing and advocacy for the preservation of open space, environmental health, and social justice, NQ’s NOAA Environmental Literacy Program will empower local youth leaders and organizers to educate and engage their peers, family members, and neighbors in preparation for the effective activation of three Climate Resiliency Hubs (blue/green infrastructure projects currently in development at local Melrose community garden sites). During disturbances, these Hubs will act as community-led crisis coordinating centers, providing access to freshwater and resources such as food, charging stations, and other necessities. In non-crisis times, the Hubs will be centers for community power-building, where residents gain the tools to advocate for long-term climate justice goals. This NOAA-funded program will develop the data, knowledge, talking points, and civic engagement roadmaps required to increase resident involvement in the effective implementation of the Climate Resiliency Hubs and, with support from our project partners at the New York City Environmental Justice Alliance, strengthen community activism and advocacy to ensure that the Hubs provide the greatest possible impact for the community. Our first objective is to increase NQ’s capacity through research and analysis. An Environmental Literacy Program Manager, Climate Resiliency Research Fellow, and 2 Environmental Literacy Youth Leaders will gather and analyze data to support the development and sustainability of NQ’s Climate Resiliency Hubs, to be used for city- and state-level advocacy around climate preparedness policy changes and climate-resilience related funding allocations. The program’s second objective is to improve environmental literacy in the South Bronx community and strengthen organizing and advocacy efforts. Through deep training, the Environmental Literacy Youth Leaders and NQ’s larger cohort of youth organizers will be prepared to conduct community education activities for Melrose residents on key environmental justice indicators and data points. The education content will be integrated into NQ’s roster of public events, such as garden walking tours, festivals, community discussions, etc. The program will conclude with a South Bronx Climate Resiliency Symposium to further galvanize residents and lay the groundwork for continued resilience planning and policy advocacy in the South Bronx. As a result of this program, NQ will build a more confident, engaged, and environmentally literate Melrose Commons that will champion climate resilience throughout the South Bronx.