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A spatially variable scarcity of floating microplastics in the eastern North Pacific Ocean

Bibliographic Data

ID15548445
AuthorsMatthias Egger (0000-0002-1791-1842, The Ocean Cleanup, corresponding author), Rein Nijhof (Utrecht University), Lauren Quiros (Utrecht University), Giulia Leone (0000-0003-2906-6815, The Ocean Cleanup), Sarah‐Jeanne Royer (0000-0003-1070-8611, Scripps Institution of Oceanography), Sarah-Jeanne Royer, Andrew McWhirter (0000-0002-6361-5964, Hawaii Pacific University), Andrew C McWhirter, Gennady Kantakov (All-Russian Research Institute Fisheries and Oceanography), Gennady A Kantakov, В И Радченко (0000-0002-4048-077X, North Pacific Anadromous Fish Commission), Vladimir I Radchenko, Evgeny A Pakhomov (0000-0002-6145-2129, University of British Columbia), Brian P V Hunt (0000-0003-4718-4962, University of British Columbia), Laurent Lebreton (0000-0002-7443-2100, The Ocean Cleanup)
Year2020
Volume15
Issue11
Pages114056-114056
Publication date2020-11-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abbb4f
OpenAlexW3097420845
LanguageEN
Citations received3
References cited45

Plastic waste accumulating in the global ocean is an increasingly threatening environmental issue. To date, the floating and thus most visible fraction of ocean plastic pollution has been mapped at global scale. Yet, large knowledge gaps exist in our current understanding of the transport and transformation processes of positively buoyant plastic debris at the sea surface. Observations at sea typically report an apparent scarcity of microplastics ( 500 μ m) and mesoplastics (0.5–5 cm) in the surface waters of the eastern North Pacific Ocean using data from 1136 040 plastic fragments collected by 679 neuston trawl deployments between 2015 and 2019. Our results reveal that the apparent microplastic scarcity is not uniformly distributed across the region. Instead, we show that the relative abundance of floating microplastics increases from the outside to the inside of the North Pacific Garbage Patch. We hypothesize that this observation could be explained by (i) a spatially variable microplastic removal due to spatial differences in ocean productivity, (ii) a differential dispersal of micro- vs. mesoplastics with a preferential accumulation of microplastics in the subtropical gyre, and/or (iii) the timescales associated with transport and fragmentation of plastic objects at the ocean surface with older, more degraded, floating plastic accumulation in subtropical gyres. The results presented here highlight that global estimates of the accumulation and removal of positively buoyant microplastics need to consider spatial aspects such as variations in ocean productivity, the dominant physical transport processes in a given area, as well as the time needed for a plastic object to reach the specific offshore location

Biology · Debris · Marine debris · Microplastics · Ocean gyre · Plastic pollution · Subtropics · Environmental Science · Microplastics and Plastic Pollution · Recycling and Waste Management Techniques · Ecology · Geology · Oceanography

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Unique citing works3
Citations per year0,6
Citation span2021 - 2026 (6)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 3

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