{"accessLevel": "public", "bureauCode": ["020:00"], "contactPoint": {"fn": "Stephen Pacella", "hasEmail": "mailto:pacella.stephen@epa.gov"}, "description": "High-resolution (15-minute frequency) monitoring of pH, dissolved oxygen, salinity, temperature, depth, and chlorophyll was conducted from July 15-October 1, 2015 in a shallow, subtidal seagrass bed in Puget Sound, WA, USA.  Grab samples for instrument validation and carbonate chemistry analysis were periodically taken next to the in-situ instrumentation. \n\nThis dataset is associated with the following publication:\nPacella, S., C. Brown, G. Waldbusser, R. Labiosa, and B. Hales. Seagrass habitat metabolism increases short-term extremes and long-term offset of CO2 under future ocean acidification.   PNAS  (PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES). National Academy of Sciences, WASHINGTON, DC, USA, 115(15): 3870-3875, (2018).", "distribution": [{"downloadURL": "https://pasteur.epa.gov/uploads/10.23719/1407616/PNAS_sciencehub_Pacella.xlsx", "mediaType": "application/vnd.openxmlformats-officedocument.spreadsheetml.sheet", "title": "PNAS_sciencehub_Pacella.xlsx"}], "identifier": "https://doi.org/10.23719/1407616", "keyword": ["Ocean acidification", "carbonate chemistry", "coastal acidification", "seagrasses"], "license": "https://pasteur.epa.gov/license/sciencehub-license.html", "modified": "2017-08-30", "programCode": ["020:096"], "publisher": {"name": "U.S. EPA Office of Research and Development (ORD)", "subOrganizationOf": {"name": "U.S. Environmental Protection Agency", "subOrganizationOf": {"name": "U.S. Government"}}}, "references": ["https://doi.org/10.1073/pnas.1703445115"], "rights": null, "title": "Snohomish Estuary nutrient enhanced coastal acidification pH time series and grab samples"}