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Are we underestimating microplastic abundance in the marine environment? A comparison of microplastic capture with nets of different mesh-size

Environmental Pollution 2020 491 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
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Lindeque Stephanie Wright, Matthew Cole, Matthew Cole, Matthew Cole, Rachel Coppock, Matthew Cole, Tamara S. Galloway, Stephanie Wright, Tamara S. Galloway, Rachel Coppock, Rachel Coppock, Matthew Cole, Ceri Lewis, Tamara S. Galloway, Penelope K. Lindeque Tamara S. Galloway, Ceri Lewis, Ceri Lewis, Tamara S. Galloway, Penelope K. Lindeque Tamara S. Galloway, Tamara S. Galloway, Ceri Lewis, Tamara S. Galloway, Penelope K. Lindeque Penelope K. Lindeque Matthew Cole, Matthew Cole, Matthew Cole, Rachel Coppock, Tamara S. Galloway, Tamara S. Galloway, Matthew Cole, Matthew Cole, Matthew Cole, Matthew Cole, Matthew Cole, Rachel Coppock, Tamara S. Galloway, Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Ceri Lewis, Ceri Lewis, Penelope K. Lindeque Matthew Cole, Matthew Cole, Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Matthew Cole, Penelope K. Lindeque Penelope K. 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Galloway, Matthew Cole, Stephanie Wright, Matthew Cole, Tamara S. Galloway, Stephanie Wright, Matthew Cole, Tamara S. Galloway, Matthew Cole, Stephanie Wright, Matthew Cole, Tamara S. Galloway, Rachel Coppock, Andrew J. R. Watts, Rachael Z. Miller, Tamara S. Galloway, Matthew Cole, Tamara S. Galloway, Matthew Cole, Matthew Cole, Tamara S. Galloway, Ceri Lewis, Matthew Cole, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Stephanie Wright, Penelope K. Lindeque Stephanie Wright, Ceri Lewis, Ceri Lewis, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Stephanie Wright, Stephanie Wright, Stephanie Wright, Ceri Lewis, Ceri Lewis, Andrew J. R. Watts, Rachael Z. Miller, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Penelope K. Lindeque Tamara S. Galloway, Tamara S. Galloway, Penelope K. Lindeque Alice Wilson-McNeal, Ceri Lewis, Penelope K. Lindeque Tamara S. Galloway, Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Penelope K. Lindeque Stephanie Wright, Stephanie Wright, Stephanie Wright, Stephanie Wright, Matthew Cole, Tamara S. Galloway, Stephanie Wright, Stephanie Wright, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Matthew Cole, Tamara S. Galloway, Tamara S. Galloway, Ceri Lewis, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Tamara S. Galloway, Penelope K. Lindeque Tamara S. Galloway, Ceri Lewis, Ceri Lewis, Penelope K. Lindeque Ceri Lewis, Ceri Lewis, Ceri Lewis, Ceri Lewis, Ceri Lewis, Penelope K. Lindeque Ceri Lewis, Tamara S. Galloway, Matthew Cole, Matthew Cole, Matthew Cole, Penelope K. Lindeque Tamara S. Galloway, Tamara S. Galloway, Rachel Coppock, Tamara S. Galloway, Tamara S. Galloway, Ceri Lewis, Stephanie Wright, Stephanie Wright, Tamara S. Galloway, Penelope K. Lindeque Tamara S. Galloway, Ceri Lewis, Tamara S. Galloway, Stephanie Wright, Ceri Lewis, Matthew Cole, Tamara S. Galloway, Matthew Cole, Penelope K. Lindeque Stephanie Wright, Tamara S. Galloway, Stephanie Wright, Matthew Cole, Rachel Coppock, Tamara S. Galloway, Stephanie Wright, Tamara S. Galloway, Ceri Lewis, Penelope K. Lindeque

Summary

By sampling marine water simultaneously with 333 µm and finer nets, researchers demonstrated that standard 333 µm sampling nets miss the majority of microplastics present, with finer nets capturing orders of magnitude more particles and revealing severe underestimation in existing abundance data.

Study Type Environmental

Microplastic debris is ubiquitous and yet sampling, classifying and enumerating this prolific pollutant in marine waters has proven challenging. Typically, waterborne microplastic sampling is undertaken using nets with a 333 μm mesh, which cannot account for smaller debris. In this study, we provide an estimate of the extent to which microplastic concentrations are underestimated with traditional sampling. Our efforts focus on coastal waters, where microplastics are predicted to have the greatest influence on marine life, on both sides of the North Atlantic Ocean. Microplastic debris was collected via surface trawls using 100, 333 and 500 μm nets. Our findings show that sampling using nets with a 100 μm mesh resulted in the collection of 2.5-fold and 10-fold greater microplastic concentrations compared with using 333 and 500 μm meshes respectively (P < 0.01). Based on the relationship between microplastic concentrations identified and extrapolation of our data using a power law, we estimate that microplastic concentrations could exceed 3700 microplastics m<sup>-3</sup> if a net with a 1 μm mesh size is used. We further identified that use of finer nets resulted in the collection of significantly thinner and shorter microplastic fibres (P < 0.05). These results elucidate that estimates of marine microplastic concentrations could currently be underestimated.

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