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DOI | 10.1016/j.marpolbul.2018.11.045 |
Coastal accumulation of microplastic particles emitted from the Po River; Northern Italy: Comparing remote sensing and hydrodynamic modelling with in situ sample collections | |
Atwood E.C.; Falcieri F.M.; Piehl S.; Bochow M.; Matthies M.; Franke J.; Carniel S.; Sclavo M.; Laforsch C.; Siegert F. | |
发表日期 | 2019 |
ISSN | 0025326X |
起始页码 | 561 |
结束页码 | 574 |
卷号 | 138 |
英文摘要 | Microplastic research has mainly concentrated on open seas, while riverine plumes remain largely unexplored despite their hypothesized importance as a microplastic source to coastal waters. This work aimed to model coastal accumulation of microplastic particles (1–5 mm) emitted by the Po River over 1.5 years. We posit that river-induced microplastic accumulation on adjacent coasts can be predicted using (1) hydrodynamic-based and (2) remote sensing-based modelling. Model accumulation maps were validated against sampling at nine beaches, with sediment microplastic concentrations up to 78 particles/kg (dry weight). Hydrodynamic modelling revealed that discharged particle amount is only semi-coupled to beaching rates, which are strongly mouth dependent and occur within the first ten days. Remote sensing modelling was found to better capture river mouth relative strength, and accumulation patterns were found consistent with hydrodynamic modelling. This methodology lays groundwork for developing an operational monitoring system to assess microplastic pollution emitted by a major river. © 2018 The Authors |
英文关键词 | Beach sediment; FT-IR; Landsat-8; River plume; ROMS; Sentinel-2 |
语种 | 英语 |
scopus关键词 | Beaches; Hydrodynamics; Microplastic; Remote sensing; Rivers; ROM; Beach sediments; Hydrodynamic modelling; LANDSAT; Microplastic particles; Operational monitoring system; River plume; Sample collection; Sentinel-2; River pollution; accumulation; beach; coastal sediment; coastal zone; comparative study; FTIR spectroscopy; hydrodynamics; Landsat; particle size; plastic; pollutant transport; pollution monitoring; remote sensing; satellite data; Sentinel; article; controlled study; dry weight; hydrodynamics; Italy; mouth; plume; remote sensing; river; sampling; satellite imagery; seashore; sediment; analysis; comparative study; environmental monitoring; hydrodynamics; Italy; procedures; river; sediment; theoretical model; water pollutant; Italy; Po River; plastic; Environmental Monitoring; Geologic Sediments; Hydrodynamics; Italy; Models, Theoretical; Plastics; Remote Sensing Technology; Rivers; Water Pollutants, Chemical |
来源期刊 | Marine Pollution Bulletin
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/150180 |
作者单位 | RSS Remote Sensing Solutions GmbH, Isarstr. 3, Baierbrunn, 82065, Germany; Ludwig-Maximilians-Universität Munich, GeoBio-Center, Großhadernerstr. 2, Martinsried, Planegg 82152, Germany; Consiglio Nazionale delle Ricerche – Istituto di Scienze Marine (CNR-ISMAR), Arsenale-Tesa 104, Castello 2737/F, Venezia, 30122, Italy; University Bayreuth, Dept. Animal Ecology I, Universitätsstr. 30, Bayreuth, 95440, Germany; Helmholtz Centre Potsdam - GFZ German Research Centre for Geosciences, Telegrafenberg, Potsdam, 14473, Germany; University of Osnabrück, Institute of Environmental Systems Research, Barbarastr. 12, Osnabrück, 49069, Germany |
推荐引用方式 GB/T 7714 | Atwood E.C.,Falcieri F.M.,Piehl S.,et al. Coastal accumulation of microplastic particles emitted from the Po River; Northern Italy: Comparing remote sensing and hydrodynamic modelling with in situ sample collections[J],2019,138. |
APA | Atwood E.C..,Falcieri F.M..,Piehl S..,Bochow M..,Matthies M..,...&Siegert F..(2019).Coastal accumulation of microplastic particles emitted from the Po River; Northern Italy: Comparing remote sensing and hydrodynamic modelling with in situ sample collections.Marine Pollution Bulletin,138. |
MLA | Atwood E.C.,et al."Coastal accumulation of microplastic particles emitted from the Po River; Northern Italy: Comparing remote sensing and hydrodynamic modelling with in situ sample collections".Marine Pollution Bulletin 138(2019). |
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