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The physical oceanography of the transport of floating marine debris

Environmental Research Letters · 2020 · Vol. 15(2) · pp. 023003–023003
Erik van SebilleStefano AlianiKara Lavender LawNikolai MaximenkoJosé M. AlsinaAndrei BagaevMelanie BergmannBertrand ChapronIrina ChubarenkoAndrés CózarPhilippe DelandmeterMatthias EggerBaylor Fox‐KemperShungudzemwoyo P. GarabaLonneke Goddijn‐MurphyBritta Denise HardestyMatthew J. HoffmanAtsuhiko IsobeCleo JongedijkMikael KaandorpLiliya KhatmullinaAlbert A. KoelmansTobias KukulkaCharlotte LaufkötterLaurent LebretonDelphine LobelleChristophe MaesVíctor Martínez-VicenteM. Á. Morales MaquedaMarie Poulain-ZarcosErnesto RodríguezPeter G. RyanAlan L. ShanksWon Joon ShimGiuseppe SuariaMartín ThielTon S. van den BremerDavid Wichmann

Abstract

Abstract Marine plastic debris floating on the ocean surface is a major environmental problem. However, its distribution in the ocean is poorly mapped, and most of the plastic waste estimated to have entered the ocean from land is unaccounted for. Better understanding of how plastic debris is transported from coastal and marine sources is crucial to quantify and close the global inventory of marine plastics, which in turn represents critical information for mitigation or policy strategies. At the same time, plastic is a unique tracer that provides an opportunity to learn more about the physics and dynamics of our ocean across multiple scales, from the Ekman convergence in basin-scale gyres to individual waves in the surfzone. In this review, we comprehensively discuss what is known about the different processes that govern the transport of floating marine plastic debris in both the open ocean and the coastal zones, based on the published literature and referring to insights from neighbouring fields such as oil spill dispersion, marine safety recovery, plankton connectivity, and others. We discuss how measurements of marine plastics (both in situ and in the laboratory), remote sensing, and numerical simulations can elucidate these processes and their interactions across spatio-temporal scales.

Microplastics and Plastic PollutionOil Spill Detection and MitigationOcean gyreDebrisOceanographyMarine debrisEnvironmental scienceOceanic basinMicroplasticsOcean currentGeologyStructural basin

Funding

  • National Science Foundation
  • National Aeronautics and Space Administration
  • Gulf of Mexico Research Initiative
  • Indian National Science Academy
  • European Space Agency
  • Royal Academy of Engineering
  • Sight Research UK
  • European Commission
  • Commonwealth Scientific and Industrial Research Organisation
  • Deutsche Forschungsgemeinschaft
  • Russian Foundation for Basic Research
  • Ministry of Oceans and Fisheries
  • Nuclear Safety and Security Commission
  • Russian Science Foundation
  • Natural Environment Research Council
  • Agencia Estatal de Investigación
  • Division of Ocean Sciences
  • H2020 European Research Council
  • H2020 Environment
Citations
915
FWCI
28.40
field-weighted impact
References
447
Percentile
100%
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Citations per year
References
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Marine Pollution Bulletin · 2014 · 720 citations
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Marine Pollution Bulletin · 2011 · 664 citations
Life in the “Plastisphere”: Microbial Communities on Plastic Marine Debris
Environmental Science & Technology · 2013 · 3,059 citations
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Marine Ecology Progress Series · 2003 · 525 citations
Plastic waste inputs from land into the ocean
Science · 2015 · 12,373 citations
Numerical modelling of floating debris in the world’s oceans
Marine Pollution Bulletin · 2012 · 824 citations
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