Marine Litter Windrows: A Strategic Target to Understand and Manage the Ocean Plastic Pollution
Frontiers in Marine Science2021
68 citations
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Score: 45
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Atsuhiko Isobe,
Carmen Morales‐Caselles,
Stefano Aliani,
Stefano Aliani,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Oihane C. Basurko,
Atsuhiko Isobe,
Konstantinos Topouzelis,
Konstantinos Topouzelis,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Andrés Cózar,
Andrés Cózar,
Andrés Cózar,
Andrés Cózar,
Atsuhiko Isobe,
Atsuhiko Isobe,
Stefano Aliani,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Anna Rubio,
Oihane C. Basurko,
Manuel Arias
Manuel Arias
Andrés Cózar,
Atsuhiko Isobe,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Atsuhiko Isobe,
Oihane C. Basurko,
Anna Rubio,
Manuel Arias
Andrés Cózar,
Stefano Aliani,
Stefano Aliani,
Andrés Cózar,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Atsuhiko Isobe,
Carmen Morales‐Caselles,
Oihane C. Basurko,
Oihane C. Basurko,
Oihane C. Basurko,
Andrés Cózar,
Konstantinos Topouzelis,
Konstantinos Topouzelis,
Atsuhiko Isobe,
Atsuhiko Isobe,
Oihane C. Basurko,
Anna Rubio,
Atsuhiko Isobe,
Atsuhiko Isobe,
Manuel Arias
Atsuhiko Isobe,
Andrés Cózar,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Andrés Cózar,
Stefano Aliani,
Oihane C. Basurko,
Andrés Cózar,
Andrés Cózar,
Manuel Arias
Stefano Aliani,
Carmen Morales‐Caselles,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Atsuhiko Isobe,
Andrés Cózar,
Andrés Cózar,
Andrés Cózar,
Manuel Arias
Oihane C. Basurko,
Oihane C. Basurko,
Anna Rubio,
Atsuhiko Isobe,
Atsuhiko Isobe,
Konstantinos Topouzelis,
Atsuhiko Isobe,
Konstantinos Topouzelis,
Konstantinos Topouzelis,
Andrés Cózar,
Andrés Cózar,
Andrés Cózar,
Stefano Aliani,
Andrés Cózar,
Andrés Cózar,
Carmen Morales‐Caselles,
Anna Rubio,
Atsuhiko Isobe,
Atsuhiko Isobe,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Anna Rubio,
Atsuhiko Isobe,
Atsuhiko Isobe,
Stefano Aliani,
Stefano Aliani,
Atsuhiko Isobe,
Andrés Cózar,
Carmen Morales‐Caselles,
Atsuhiko Isobe,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Atsuhiko Isobe,
Andrés Cózar,
Carmen Morales‐Caselles,
Stefano Aliani,
Atsuhiko Isobe,
Andrés Cózar,
Andrés Cózar,
Atsuhiko Isobe,
Stefano Aliani,
Carmen Morales‐Caselles,
Stefano Aliani,
Stefano Aliani,
Atsuhiko Isobe,
Stefano Aliani,
Stefano Aliani,
Stefano Aliani,
Oihane C. Basurko,
Stefano Aliani,
Stefano Aliani,
Carmen Morales‐Caselles,
Konstantinos Topouzelis,
Atsuhiko Isobe,
Atsuhiko Isobe,
Stefano Aliani,
Stefano Aliani,
Atsuhiko Isobe,
Atsuhiko Isobe,
Andrés Cózar,
Stefano Aliani,
Konstantinos Topouzelis,
Manuel Arias
Summary
This paper introduces the concept of marine litter windrows as naturally occurring surface aggregations of floating debris driven by Langmuir circulation, arguing these zones represent strategic targets for monitoring and removal of ocean plastic pollution.
Study Type
Environmental
Windrow is a long-established term for the aggregations of seafoam, seaweeds, plankton and natural debris that appear on the ocean surface. Here, we define a “litter windrow” as any aggregation of floating litter at the submesoscale domain (<10 km horizontally), regardless of the force inducing the surface convergence, be it wind or other forces such as tides or density-driven currents. The marine litter windrows observed to date usually form stripes from tens up to thousands of meters long, with litter densities often exceeding 10 small items (<2 cm) per m 2 or 1 large item (>2 cm) per 10 m 2 . Litter windrows are generally overlooked in research due to their dispersion, small size and ephemeral nature. However, applied research on windrows offers unique possibilities to advance on the knowledge and management of marine litter pollution. Litter windrows are hot spots of interaction with marine life. In addition, since the formation of dense litter windrows requires especially high loads of floating litter in the environment, their detection from space-borne sensors, aerial surveys or other platforms might be used to flag areas and periods of severe pollution. Monitoring and assessing of management plans, identification of pollution sources, or impact prevention are identified as some of the most promising fields of application for the marine litter windrows. In the present Perspective, we develop a conceptual framework and point out the main obstacles, opportunities and methodological approaches to address the study of litter windrows.