Item talk:Q253406
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{
"USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "Plant biomass and rates of carbon dioxide uptake are enhanced by successful restoration of tidal connectivity in salt marshes", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70215127", "url": "https://pubs.usgs.gov/publication/70215127" }, { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse Internal ID", "value": 70215127 }, { "@type": "PropertyValue", "propertyID": "DOI", "value": "10.1016/j.scitotenv.2020.141566", "url": "https://doi.org/10.1016/j.scitotenv.2020.141566" } ], "journal": { "@type": "Periodical", "name": "Science of the Total Environment", "volumeNumber": "750", "issueNumber": null }, "inLanguage": "en", "isPartOf": [ { "@type": "CreativeWorkSeries", "name": "Science of the Total Environment" } ], "datePublished": "2020", "dateModified": "2020-10-08", "abstract": "Salt marshes, due to their capability to bury soil carbon (C), are potentially important regional C sinks. Efforts to restore tidal flow to former salt marshes have increased in recent decades in New England (USA), as well as in some other parts of the world. In this study, we investigated plant biomass and carbon dioxide (CO2) fluxes at four sites where restoration of tidal flow occurred five to ten years prior to the study. Site elevation, aboveground biomass, CO2\u00a0flux, and porewater chemistry were measured in 2015 and 2016 in both restored marshes and adjacent marshes where tidal flow had never been restricted. We found that the elevation in restored marsh sites was 2\u201316\u00a0cm lower than their natural references. Restored marshes where porewater chemistry was similar to the natural reference had greater plant aboveground biomass, gross ecosystem production, ecosystem respiration, as well as net ecosystem CO2\u00a0exchange (NEE) than the natural reference, even though they had the same plant species. We also compared respiration rates in aboveground biomass (AR) and soil (BR) during July 2016, and found that restored marshes had higher AR and BR fluxes than natural references. Our findings indicated that well-restored salt marshes can result in greater plant biomass and NEP, which has the potential to enhance rates of C sequestration at 10-yrs post restoration. Those differences were likely due to lower elevation and greater flooding frequency in the recently restored marshes than the natural marsh. The inverse relationship between elevation and productivity further suggests that, where sea-level rise rate does not surpass the threshold of plant survival, the restoration of these salt marshes may lead to enhanced organic and mineral sedimentation, extending marsh survival under increased sea level, and recouping carbon stocks that were lost during decades of tidal restriction.", "description": "141566, 11 p.", "publisher": { "@type": "Organization", "name": "Elsevier" }, "author": [ { "@type": "Person", "name": "Wang, Fanning", "givenName": "Fanning", "familyName": "Wang", "affiliation": [ { "@type": "Organization", "name": "Xiaoliang Research Station of Tropical Coastal Ecosystems, the CAS Engineering Laboratory for Ecological Restoration of Island and Coastal Ecosystems, South China" } ] }, { "@type": "Person", "name": "Kroeger, Kevin D. kkroeger@usgs.gov", "givenName": "Kevin D.", "familyName": "Kroeger", "email": "kkroeger@usgs.gov", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0002-4272-2349", "url": "https://orcid.org/0000-0002-4272-2349" }, "affiliation": [ { "@type": "Organization", "name": "Coastal and Marine Hazards and Resources Program", "url": "https://www.usgs.gov/programs/cmhrp" } ] }, { "@type": "Person", "name": "Spivak, Amanda C.", "givenName": "Amanda C.", "familyName": "Spivak" }, { "@type": "Person", "name": "Tang, Jianwu", "givenName": "Jianwu", "familyName": "Tang", "affiliation": [ { "@type": "Organization", "name": "The Ecosystems Center, Marine Biological Laboratory. Woods Hole, MA 02543." } ] }, { "@type": "Person", "name": "Eagle, Meagan J. meagle@usgs.gov", "givenName": "Meagan J.", "familyName": "Eagle", "email": "meagle@usgs.gov", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0001-5072-2755", "url": "https://orcid.org/0000-0001-5072-2755" }, "affiliation": [ { "@type": "Organization", "name": "Woods Hole Coastal and Marine Science Center", "url": "https://www.usgs.gov/centers/woods-hole-coastal-and-marine-science-center" } ] } ], "funder": [ { "@type": "Organization", "name": "Woods Hole Coastal and Marine Science Center", "url": "https://www.usgs.gov/centers/woods-hole-coastal-and-marine-science-center" } ], "spatialCoverage": [ { "@type": "Place", "additionalType": "country", "name": "United States", "url": "https://geonames.org/4074035" }, { "@type": "Place", "additionalType": "state", "name": "Massachusetts" }, { "@type": "Place", "geo": [ { "@type": "GeoShape", "additionalProperty": { "@type": "PropertyValue", "name": "GeoJSON", "value": { "type": "FeatureCollection", "features": [ { "type": "Feature", "properties": {}, "geometry": { "type": "Polygon", "coordinates": [ [ [ -70.7464599609375, 41.679066225164114 ], [ -69.884033203125, 41.679066225164114 ], [ -69.884033203125, 42.07987816698549 ], [ -70.7464599609375, 42.07987816698549 ], [ -70.7464599609375, 41.679066225164114 ] ] ] } } ] } } }, { "@type": "GeoCoordinates", "latitude": 41.8794721960748, "longitude": -70.31524658203125 } ] } ] }, "OpenAlex": { "abstract_inverted_index": { "Salt": [ 0 ], "marshes,": [ 1 ], "due": [ 2, 223 ], "to": [ 3, 6, 18, 22, 67, 71, 127, 209, 224, 270 ], "their": [ 4, 117 ], "capability": [ 5 ], "bury": [ 7 ], "soil": [ 8, 171 ], "carbon": [ 9, 53, 285 ], "(C),": [ 10 ], "are": [ 11 ], "potentially": [ 12 ], "important": [ 13 ], "regional": [ 14 ], "C": [ 15, 213 ], "sinks.": [ 16 ], "Efforts": [ 17 ], "restore": [ 19 ], "tidal": [ 20, 63, 97, 293 ], "flow": [ 21, 64, 98 ], "former": [ 23 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