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.
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).
Raindrop: An Innovative Educational Tool for River Awareness
This project will create a new educational tool for river awareness in the United States through a mobile device application called Raindrop. Raindrop traces the flow of water from the user's home location to a downstream watershed location. Raindrop is part of a larger installation named FLOW (Can You See the River?), which joins the cognitive power of science with the affective power of the arts by creating virtual and physical spaces for river awareness in the White River watershed in Indianapolis, IN. In addition to the flow path, Raindrop functionality includes watershed context and physical marker mapping, flow path water quality indicators, utilization of NOAA weather feeds and alerts, weather and climate comparisons, storm event size implications, and guidance on watershed restoration actions. Artist-designed physical markers are strategically located in the watershed to direct the virtual user to physical areas of interest.
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.
Summer Science in New England: Ocean Education through Informal Science Centers
The Summer Science in New England project has established a regional network of summer camp programs grounded in ocean science. In year one, six institutions - New England Aquarium, Northeastern University's Marine Science Center, University of Rhode Island's Alton Jones Camp, the University of Connecticut's Project Oceanology, the Seacoast Science Center in NH, and the Marine Environmental Research Institute in Maine - work alongside research scientists to engage campers, ages 14 and up, in near-shore biodiversity monitoring. In years two and three, the number of partners increases to 10, then 12. The project provides a citizen science experience across a wide geographical area, supports and trains informal science center staff to incorporate citizen science while using environmental literacy principles with teens, and offers opportunities for all participants to share findings with peers at annual forums.
A National Coalition of Aquariums Educating About Climate Change
This collaboration led by three major national aquariums - Monterey Bay Aquarium (MBAq), National Aquarium in Baltimore (NAIB), and New England Aquarium (NEAq) - is developing a leadership initiative to build capacity within aquariums and related informal science education institutions nation-wide, enabling education staff to engage and inspire millions of visitors to take action about climate change and the ocean. The project increases climate literacy among informal science educators by: 1) creating a national network for training, resource sharing and support; 2) developing climate change activity carts to support exhibit interpretation; 3) providing training for youth interpreters; and 4) hosting regional and national summits to strengthen collaboration and showcase and disseminate model programs. Outcomes for educators include increased knowledge of climate change science; knowledge of strategies, tools and materials for educating about climate change; and confidence in their ability to communicate about climate change.
Interpretation of Real-Time Weather and Climate Data for Spherical Displays
The Interpretation of Real-time Weather and Climate for Spherical Displays (EarthNow) project utilizes the Science on a Sphere (SOS) Network to enable meaningful interpretation of real-time weather and climate data by museum docents and visitors viewing SOS exhibits nationwide. The project will generate and provide real-time NOAA weather, climate and ocean data to the SOS Network along with appropriate training for docents. It will also provide data interpretation summaries, data discussions and concise talking points on a regularly updated blog. This project is being implemented by a collaborative team of two weather and climate centers of NOAA/NESDIS: the Cooperative Institute for Meteorological Satellite Studies (CIMSS) and Cooperative Institute for Climate and Satellites (CICS), in association with the NOAA Environmental Visualization Laboratory, the I.M. Systems Group, and the Maryland Science Center.