{"accessLevel": "public", "bureauCode": ["010:12"], "contactPoint": {"@type": "vcard:Contact", "fn": "Camille L. Stagg", "hasEmail": "mailto:staggc@usgs.gov"}, "description": "Coastal wetlands store more carbon than most ecosystems globally. However, little is known about the mechanisms that control the loss of organic matter in coastal wetlands at the landscape scale, and how sea-level rise will impact this important ecological function.", "distribution": [{"@type": "dcat:Distribution", "accessURL": "https://doi.org/10.5066/F7639MVK", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", "title": "Digital Data"}, {"@type": "dcat:Distribution", "description": "The metadata original format", "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.57fd41dde4b0824b2d13107c.xml", "format": "XML", "mediaType": "text/xml", "title": "Original Metadata"}], "identifier": "http://datainventory.doi.gov/id/dataset/USGS_57fd41dde4b0824b2d13107c", "keyword": ["Barataria Basin", "Louisiana", "Organic matter decomposition", "Terrebonne Basin", "USGS:57fd41dde4b0824b2d13107c", "asymptote", "cellulose decay", "coastal wetlands", "decay constant", "flooding", "labile carbon", "landscape scale", "lignin content", "litter quality", "nitrogen content", "porewater", "refractory carbon", "root zone", "salinity", "sea-level rise"], "modified": "2020-08-30T00:00:00Z", "publisher": {"@type": "org:Organization", "name": "U.S. Geological Survey"}, "spatial": "-91.3929462432861, 28.9048016803035, -89.6653461456299, 30.0144089732489", "theme": ["geospatial"], "title": "Organic Matter Decomposition across a Coastal Wetland Landscape in Louisiana, U.S.A. Environmental Data (2014-2015)"}