{"accessLevel": "public", "bureauCode": ["010:12"], "contactPoint": {"@type": "vcard:Contact", "fn": "Gregg Snedden", "hasEmail": "mailto:sneddeng@usgs.gov"}, "description": "The sustainability of coastal wetlands largely hinges on their ability to accrue elevation capital at a rate that equals or exceeds relative sea-level rise.  A better understanding of these processes is needed to accurately assess the sustainability of these landscapes, and to predict their response to restoration measures such as sediment delivery through river diversions.", "distribution": [{"@type": "dcat:Distribution", "accessURL": "https://doi.org/10.5066/F7BK1BJ8", "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.5a4eae82e4b0d05ee8c6649c.xml", "format": "XML", "mediaType": "text/xml", "title": "Original Metadata"}], "identifier": "http://datainventory.doi.gov/id/dataset/USGS_5a4eae82e4b0d05ee8c6649c", "keyword": ["Barataria basin", "Gulf of Mexico", "Louisiana", "USGS:5a4eae82e4b0d05ee8c6649c", "belowground biomass", "carbon burial", "cesium-137", "coastal wetland", "lead-210", "radioisotope", "sedimentation", "soil bulk density", "soil organic matter", "vertical accretion"], "modified": "2020-08-30T00:00:00Z", "publisher": {"@type": "org:Organization", "name": "U.S. Geological Survey"}, "spatial": "-90.565795898418, 29.099002890254, -89.313354492218, 29.992631474995", "theme": ["geospatial"], "title": "Soil properties, soil radioisotope activity, and end-of-season belowground biomass across Barataria basin wetlands (2016)"}