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.
Community Climate Education for a Resilient Raleigh
As a southern city, Raleigh, North Carolina is no stranger to heat, humidity and heavy rains. But as the climate changes, and as Raleigh grows, these environmental conditions have come to have greater impacts on human health and economic security. Extreme heat and flooding disproportionately effect low-income and Black and brown populations in Raleigh as these communities are more likely to live in low-lying, flood-prone neighborhoods and urban heat islands.
As a southern city, Raleigh, North Carolina is no stranger to heat, humidity and heavy rains. But as the climate changes, and as Raleigh grows, these environmental conditions have come to have greater impacts on human health and economic security. Extreme heat and flooding disproportionately effect low-income and Black and brown populations in Raleigh as these communities are more likely to live in low-lying, flood-prone neighborhoods and urban heat islands. To build resilience among climate and socially vulnerable communities, the City of Raleigh and Partners for Environmental Justice (PEJ), a community-based environmental education and advocacy organization, are working together to implement the Community Climate Education for a Resilient Raleigh (CCERR) project. The purpose of this project is to give climate-vulnerable Raleigh residents the data and resources necessary to build their resilience, engage with decision makers, and build connections within their community. The CCERR Project has three activities. In activity one, the project will host six cohorts of a watershed learning network (two in Spanish) and three cohorts of a heat island learning network (one in Spanish). Each member of these cohorts will receive a stipend to implement a resilience project of their own. The primary service area of the watershed learning networks are flood-sensitive communities within the Walnut Creek Watershed. The primary service areas of the heat island learning teams will be in areas of the City identified as urban heat islands and disadvantaged communities. These learning networks will provide educational opportunities about watershed improvement, climate resiliency and environmental justice, and connect these issues to residents’ daily lives. Learning network participants will use their knowledge, skills and resources to become more engaged in protecting the integrity of their communities. These networks will be informed by PEJ’s experience and best practices developed by nonprofit organizations in Atlanta, GA and Durham, NH. The CCERR project will also convene these organizations to develop guidance on how to develop and program learning networks.In activity two, the CCERR project will produce an emergency preparedness meeting-in-a-box, a toolkit of print and digital resources for community meetings to help neighborhoods plan, prepare for, and recover from extreme weather events and other emergency situations. City of Raleigh staff will use the meeting-in-a-box to host workshops prioritizing climate vulnerable communities. These tools will also be available for use by any City Department, neighborhood groups, or Raleigh residents who wish to host a preparedness event. Finally, in activity three, the CCERR project will collaborate with NOAA’s Carolinas Climate Adaptation Partnership to identify neighborhood priorities for climate resilience and begin to integrate them into city planning processes. These projects and approaches will offer concrete resources, science-based data, engagement with experts and connections to City and County staff and decision-makers to give voice for Raleigh residents’ resilience priorities and the know-how and tools to take action. Each of these activities give Raleigh residents tools, resources and connections to scientific data, while supporting City and State climate action efforts.
CoCoRaHS: The Community Collaborative Rain, Hail and Snow Network
The Community Collaborative Rain, Hail and Snow Network (CoCoRaHS) involves thousands of people of all ages in the observation and study of weather, climate and water resources. In CoCoRaHS, citizens of all ages help measure and report rain, hail and snow from their own homes, schools and businesses. These data are then efficiently collected via the internet, archived in a national database, and made immediately available to participants, scientists and the general public showing the fascinating patterns of precipitation from each passing storm (see http://www.cocorahs.org). The measurement of precipitation and the patterns, variations and impacts that result, open the door to creative study of our environment. It is the "lowest common denominator" of hydroclimatic exploration. In this project, data from the CoCoRaHS citizen science network will be shared with and utilized by NOAA partners to help monitor drought, to help detect local severe storms, to alert local authorities to developing flash flood situations, to provide "ground truth" for NOAA and NASA remote sensing technologies, and to provide verification for both local and national weather and climate forecast products.
Community Collaborative Rain, Hail and Snow Network (CoCoRaHS)
The Community Collaborative Rain, Hail and Snow Network (CoCoRaHS) is a citizen science program where thousands of volunteers across the country measure and report the amount of precipitation that falls each day in their own neighborhood. In the next three years CoCoRaHS will use strategies from the “Citizen Science Toolkit” and align activities to the “Essential Principles to Climate Science” to engage thousands more participants in collecting, reporting and exploring precipitation. Evapotranspiration measurements will be added to teach and demonstrate the hydrologic cycle in action. Through strong NOAA partnerships with the National Weather Service, the National Climatic Data Center, the Earth Systems Research Lab and the National Operational Hydrologic Remote Sensing Center, precipitation data quality and accessibility for professional users will be enhanced. The CoCoRaHS network will be constructing training, data entry and visualization tools utilizing Web 2.0 concepts, cyberlearning tools and hand-held device applications with a goal of increasing participation and expanding the volunteer network into broader, younger, more diverse audiences.
Ocean Science - Formal and Informal Education for Ocean Literacy
The Ocean Science project integrates the Ocean Literacy Essential Principles and Fundamental Concepts into a Western Washington region-wide, coordinated program of formal and informal education consisting of: 1. Teacher professional development in the ocean sciences to integrate the Ocean Literacy Essential Principles and Fundamental Concepts into inquiry-based marine science education and instruction; 2. Evaluation and re-alignment of existing Sound Science ecosystems curricula into Ocean Science, incorporating NOAA data and promoting the Ocean Literacy Essential Principles and Fundamental Concepts; 3. Classroom programs, beach field investigations, and on-site programs at the Seattle Aquarium of the Olympic Coast national Marine Sanctuary's Olympic Coast Discovery Center for grades 4-5 students, their parents and teachers; 4. Parent training in ocean science content, the Ocean Literacy Essential Principles and Fundamental Concepts, and inquiry-based methods for supporting their children's science education; 5. Informal education for the general public via an interactive learning station linked to the Window on Washington Waters exhibit and designed to innovatively use NOAA data and information (videos, computer simulations and other creative media) to increase and evaluate ocean literacy in adults and children. Window on Washington Waters displays the outer coast marine environments and sea life of the Olympic Coast National Marine Sanctuary.
Visualizing Change: Training and Tools to Support Informal Educators
A consortium of Aquarium of the Pacific, National Aquarium in Baltimore, New England Aquarium and Seattle Aquarium will build educator capacity in the aquarium community and informal science education field to more effectively communicate about climate change and its impact on coastal zones and marine life. The project will utilize NOAA datasets and visualizations in providing interpreters with training and strategic framing communication tools based on the best available social and cognitive research. The objectives of the project are to: (1) develop and test four exemplary interpretive “visual narratives” that integrate research-based strategic communication with NOAA data visualization resources; (2) test the application of the visual narratives in a variety of geographic regions and institution types (aquarium, science center, etc.) using multiple technology platforms; (3) build a professional development program for climate change interpretation with data visualization; and (4) leverage existing networks for dissemination and peer support. Other key partners include the NOAA Environmental Visualization Laboratory (VisLab), the NOAA Pacific Marine Environmental Laboratory (PMEL), the Exploratorium in San Francisco, the Ocean Explorium in southern Massachusetts, FrameWorks Institute and New Knowledge Organization.
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.