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.
Measuring the Effectiveness of North American Environmental Education Programs with Respect to the Parameters of Environmental Literacy
The North American Association of Environmental Education (NAAEE) will assess environmental literacy levels of middle school students and compare the results to baseline data collected nationwide in 2007. In this study the research team will solicit and select a purposeful sample of schools and other program sites that represent the following categories: (1) Networks, e.g., Lieberman schools, Earth Force/Green Schools, Blue Ribbon School, etc.; (2) Programs, e.g. WET, WILD, PLT, IEEIA, etc.); (3) environmentally focused Charter and Magnet Schools; and (4) Independent Schools. By comparing 2008 programmatic assessments to the established 2007 base-line levels of environmental literacy (while investigating the variables that may contribute to school wide or classroom levels of literacy), the field of environmental education and NOAA may make future curricular and program decisions that are grounded in sound scientific data. The Research Team will review these results and generate a report to be submitted to NOAA and NAAEE (and other partners as needed). These results comprise a presentation at the annual NAAEE Conference and other venues. Articles will be submitted to professional newsletters and journals.
A NOAA Spherical Display System at the Smithsonian National Zoological Park
The Smithsonian National Zoological Park (SNZP) in Washington, DC is integrating the NOAA Science on a Sphere(SOS) spherical display system into SNZP's Amazonia Science Gallery (ASG). The SOS system at ASG will be seen in person by tens of thousands of visitors each year and potentially by millions more through electronic outreach programs. The SOS system will become an integral part of the exhibit and will be used for both informal and formal science education programs at the National Zoo.
Linking Evidence to Explanation in Global Science
The University of California, Berkeley's Lawrence Hall of Science (LHS), in partnership with the Bishop Museum in Honolulu, HI, propose to develop and evaluate curriculum-based content modules for spherical display systems. These modules will combine successful research-driven curriculum materials with the compelling nature of a spherical display to engage and inform museum visitors in the process of observing and interpreting patterns of global climate data.
Public Libraries Advancing Community Engagement (PLACE)
The Public Libraries Advancing Community Engagement (PLACE) project was built on the idea that librarians can play a significant role in increasing a community's climate resiliency — the ability to recover quickly from or plan for and anticipate weather impacts. PLACE paired about 50 librarians in rural and under-resourced urban communities across the U.S. with local NOAA/NWS scientists to engage over 1,500 youth and adults in a series of public library programs tailored to the local geography. The programs used popular books and human-interest videos to stimulate discussion and critical thinking about resilient responses to environmental changes and extreme weather events, as well as introducing relevant NOAA tools and resources for data access and resiliency planning. For both audience members and librarians, PLACE enhanced environmental literacy specific to their own region’s geography, vulnerabilities, and threats, toward the longer-term goal of helping them to build local resilience.
Continuing of the National Ocean Sciences Bowl (NOSB) Competitions
The National Ocean Sciences Bowl (NOSB), a nationwide high school academic competition managed by the Consortium for Ocean Leadership, has increased high school students’ knowledge of the marine sciences, including the science disciplines of biology, chemistry, physics, and geology for 25 years. The program has exposed students to the breadth of environmental, conservation and sustainability issues facing our global ocean as well as ocean-related careers available in all job sectors. The NOSB has addressed the national gap in environmental and Earth sciences in K-12 education by introducing high school students to and engaging them in ocean sciences, preparing them for careers in ocean science and other science, technology, engineering, and mathematics (STEM) disciplines. Through preparing for and competing in the 25 regional competitions of the NOSB, up to 2,000 students from 300 schools across the nation each year have gained access to ocean science research, diverse marine environments, and experts in the field, all of which helped build the personal and career skills they need as our future leaders to weigh solutions to regional, national, and global ocean and environmental challenges such as climate change, resource exploitation, and habitat loss. The ocean, as a complex system, and focus of program, has also inspired student development of innovation, engineering, and technology skills.
Community Partnership for Resilience
The New England Aquarium worked with the Metropolitan Area Planning Council to establish Community Partnerships for Resilience (CPR) starting in 2017. CPR created partnerships in three Boston-area communities that face severe risk from a changing climate – Chelsea, Hull, and Lynn, MA. Project leads worked with local professionals with diverse and relevant expertise in climate science, engineering, community planning and community action, as well as representatives from local schools or school-based educational programs serving youth in Grades 4 through 8. Partners determined the most critical, climate-related hazards for their area that would benefit from public involvement and understanding. With a focus on extreme heat, inland flooding and storm surge, project leads, and educators developed a curriculum framework. The framework was used as a guide for the creation of a unit that had students explore the identified hazards and create a Public Education Project (PEP) to communicate with community stakeholders to drive both understanding and action. Through a series of collaborative working Summer Institutes, project partners led teachers on an exploration of the framework materials, relevant science content, and a crash course on Project Based Learning techniques. Implementation of the unit in the 2018-2019 and 2019-2020 school years led to further refinement of the curriculum framework, insight on the need for further teacher supports, and improved relationships and connections with municipal and community contacts. The resulting curriculum framework was finalized alongside partner teachers in the spring and summer of 2020 and can be adapted to different climate resilience topics and PEPs, as driven by student interest. Students themselves represent a key constituency – they will be most directly impacted by future changes, and they will need civic capacity to foster positive change. Teacher resources also include a rubric to evaluate PEP plans to meet project objectives, resources on trauma-informed teachers from colleagues at Riverside Trauma Center (Needham, MA), instructional and motivation videos from educator partners on key unit phases, and a beta version of a mapping portal developed with partners at Metropolitan Area Planning Council using layered data across a variety of sources. As a result of this project, participating educators showed an increase in knowledge and awareness about climate change on a broad level, as well as local impacts in their specific Massachusetts region. CPR participation also made educators more comfortable collaborating with other educators and inviting outside expert voices for lessons. By working collaboratively, participating teachers felt they were able to better support their students to impact their communities in a positive way. CPR provided the opportunity to have students work together to communicate with the public using PEPs, allowing students and community members to collaborate in “a common effort to increase climate resilience.” As a result of this, CPR was able to expand the group of change agents who could tackle critical environmental challenges and strengthen their communities.
AMS/NOAA Cooperative Program for Earth System Education (CPESE)
The American Meteorological Society (AMS) and National Oceanic and Atmospheric Administration (NOAA) work together to share knowledge and information about weather and climate, ocean, and coasts with educators and students across the country. The goal of this effort is to build a scientifically informed and engaged society and a diverse STEM workforce prepared to respond to environmental hazards. AMS facilitates a national offering of the DataStreme Atmosphere and DataStreme Ocean courses and supports Project ATMOSPHERE leadership training workshops at the National Weather Service Training Center for in-service K-12 educators, with focus on those at schools with considerable numbers of students underrepresented in STEM. By 2023, about 2,100 educators will earn graduate credits through a partnership with California University of Pennsylvania and become confident Earth science educators. These educators are expected to impact more than 20,000 additional educators and several hundred thousand K-12 students.
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.
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.