Arctic sea ice is an important temporal sink and means of transport for microplastic
Арктический морской лёд является важным временным стоком и средством переноса микропластика
2018-04-11
SCID: 54.1/df4u2as5
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Arctic sea icemicroplasticspolymer compositionsea ice driftseasonal sea ice melt
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Abstract (AI)
Microplastics (MP) are recognized as a growing environmental hazard and have been identified as far as the remote Polar Regions, with particularly high concentrations of microplastics in sea ice. Little is known regarding the horizontal variability of MP within sea ice and how the underlying water body affects MP composition during sea ice growth. Here we show that sea ice MP has no uniform polymer composition and that, depending on the growth region and drift paths of the sea ice, unique MP patterns can be observed in different sea ice horizons. Thus even in remote regions such as the Arctic Ocean, certain MP indicate the presence of localized sources. Increasing exploitation of Arctic resources will likely lead to a higher MP load in the Arctic sea ice and will enhance the release of MP in the areas of strong seasonal sea ice melt and the outflow gateways.
Key Findings
1
Arctic sea ice acts as an important temporary sink and transport medium for microplastics.
2
Distinct microplastic patterns occur in different sea-ice horizons, reflecting the influence of the underlying water body during ice formation.
3
Increasing Arctic resource exploitation is expected to raise microplastic loads and enhance release during seasonal sea-ice melt and through outflow gateways.
4
Microplastic polymer composition in sea ice is non-uniform and varies horizontally across different growth regions and drift paths.
5
Some microplastics in remote Arctic sea ice indicate localized sources rather than exclusively widespread transport.
Research Object
Arctic sea ice containing microplastics
Research Subject
The spatial and vertical variability, polymer composition, transport, and release of microplastics in sea ice as influenced by sea-ice growth regions, drift paths, underlying waters, and seasonal melt
Publication Details
Publication Date
2018-04-11
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