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Tier 2
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Original research — experimental, observational, or case-control study. Direct primary evidence.
Environmental Sources
Marine & Wildlife
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A small-scale, portable method for extracting microplastics from marine sediments
Environmental Pollution2017
629 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 60
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Matthew Cole,
Matthew Cole,
Rachel Coppock,
Rachel Coppock,
Matthew Cole,
Rachel Coppock,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Rachel Coppock,
Rachel Coppock,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Rachel Coppock,
Tamara S. Galloway,
Rachel Coppock,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Rachel Coppock,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Rachel Coppock,
Tamara S. Galloway,
Tamara S. Galloway,
Rachel Coppock,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Ana M. Queirós,
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Ana M. Queirós,
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,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Matthew Cole,
Rachel Coppock,
Rachel Coppock,
Ana M. Queirós,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Ana M. Queirós,
Penelope K. Lindeque
Matthew Cole,
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Penelope K. Lindeque
Penelope K. Lindeque
Tamara S. Galloway,
Matthew Cole,
Penelope K. Lindeque
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Tamara S. Galloway,
Tamara S. Galloway,
Rachel Coppock,
Tamara S. Galloway,
Penelope K. Lindeque
Tamara S. Galloway,
Tamara S. Galloway,
Ana M. Queirós,
Matthew Cole,
Tamara S. Galloway,
Matthew Cole,
Tamara S. Galloway,
Penelope K. Lindeque
Matthew Cole,
Rachel Coppock,
Tamara S. Galloway,
Tamara S. Galloway,
Penelope K. Lindeque
Summary
Researchers developed a portable, low-cost device for extracting microplastics from marine sediments using density flotation with zinc chloride solution. The Sediment-Microplastic Isolation unit achieved an average extraction efficiency of nearly 96% across different sediment types in a single step. This tool makes it easier for researchers to accurately measure microplastic contamination in seafloor sediments during field work.
Study Type
Environmental
Microplastics (plastic particles, 0.1 μm-5 mm in size) are widespread marine pollutants, accumulating in benthic sediments and shorelines the world over. To gain a clearer understanding of microplastic availability to marine life, and the risks they pose to the health of benthic communities, ecological processes and food security, it is important to obtain accurate measures of microplastic abundance in marine sediments. To date, methods for extracting microplastics from marine sediments have been disadvantaged by complexity, expense, low extraction efficiencies and incompatibility with very fine sediments. Here we present a new, portable method to separate microplastics from sediments of differing types, using the principle of density floatation. The Sediment-Microplastic Isolation (SMI) unit is a custom-built apparatus which consistently extracted microplastics from sediments in a single step, with a mean efficiency of 95.8% (±SE 1.6%; min 70%, max 100%). Zinc chloride, at a density of 1.5 g cm, was deemed an effective and relatively inexpensive floatation media, allowing fine sediment to settle whilst simultaneously enabling floatation of dense polymers. The method was validated by artificially spiking sediment with low and high density microplastics, and its environmental relevance was further tested by extracting plastics present in natural sediment samples from sites ranging in sediment type; fine silt/clay (mean size 10.25 ± SD 3.02 μm) to coarse sand (mean size 149.3 ± SD 49.9 μm). The method presented here is cheap, reproducible and is easily portable, lending itself for use in the laboratory and in the field, eg. on board research vessels. By employing this method, accurate estimates of microplastic type, distribution and abundance in natural sediments can be achieved, with the potential to further our understanding of the availability of microplastics to benthic organisms.