Protection and restoration of coastal watersheds requires the synthesis of complex environmental issues. Contaminated site remediation, dredging and disposal of contaminated sediments, and restoring injured habitats are a few of the challenges facing coastal managers. The evaluation of multiple environmental issues can be significantly improved by combining scientific data and watershed characteristics into a Geographic Information System (GIS).NOAA's Coastal Protection and Restoration Division (CPRD) has developed decision-support tools for specific watersheds around the country that combine the use of a standard database structure, database-mapping application, and GIS. CPRD Watershed Database & Mapping Projects facilitate sediment and tissue chemistry and bioeffects data, natural resources, and potential habitat restoration projects to be overlaid on a watershed's features and land uses, and displayed on maps at flexible spatial scales. This approach simplifies data analysis and presentation, provides valuable tools for complex decision-making, and improves our understanding of dynamic aquatic ecosystems.
About this Dataset
Title | NOAA's Coastal Protection and Restoration Division: Watershed Database and Mapping Projects |
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Description | Protection and restoration of coastal watersheds requires the synthesis of complex environmental issues. Contaminated site remediation, dredging and disposal of contaminated sediments, and restoring injured habitats are a few of the challenges facing coastal managers. The evaluation of multiple environmental issues can be significantly improved by combining scientific data and watershed characteristics into a Geographic Information System (GIS).NOAA's Coastal Protection and Restoration Division (CPRD) has developed decision-support tools for specific watersheds around the country that combine the use of a standard database structure, database-mapping application, and GIS. CPRD Watershed Database & Mapping Projects facilitate sediment and tissue chemistry and bioeffects data, natural resources, and potential habitat restoration projects to be overlaid on a watershed's features and land uses, and displayed on maps at flexible spatial scales. This approach simplifies data analysis and presentation, provides valuable tools for complex decision-making, and improves our understanding of dynamic aquatic ecosystems. |
Modified | 2025-04-04T13:08:42.935Z |
Publisher Name | N/A |
Contact | N/A |
Keywords | Environmental Sensitivity Index , Hurricane Mitch , MARPLOT , NPL , ORR GIS , Query Manager , Superfund Site , aquatic ecosystems , chemical threat , coastal region , coastal storms initiative , contaminant release , data management , data sharing , environmental monitoring , sediment bioassay , sediment chemistry , tissue chemistry , toxicity , watershed , Alcoa/Lavaca Bay , Anacostia River , Calcasieu Estuary , Charles River , Charleston Harbor , Christina River , Elizabeth River , Hudson River , Kalamazoo River , Massachusetts Bay , New Bedford , Newark Bay , Portland Harbor , Puget Sound , San Francisco Bay , Sheboygan River , Southern California , St. Andrew Bay , St. John's River , St. Lawrence River , St. Louis River , U.S. Exclusive Economic Zone , United States , Willamette River , DOC/NOAA/NOS/ORR > Office of Response and Restoration, National Ocean Service, NOAA, U.S. Department of Commerce , Restoration , oceans |
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