Microplastics in Arctic polar waters: the first reported values of particles in surface and sub-surface samples
Микропластик в арктических полярных водах: первые опубликованные данные о частицах в поверхностных и подповерхностных пробах
2015-10-08
SCID: 54.1/pa2by6du
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Arctic microplasticsMicroplastic fibresSurface and subsurface samplingSvalbard watersZooplankton interactions
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Abstract (AI)
Plastic, as a form of marine litter, is found in varying quantities and sizes around the globe from surface waters to deep-sea sediments. Identifying patterns of microplastic distribution will benefit an understanding of the scale of their potential effect on the environment and organisms. As sea ice extent is reducing in the Arctic, heightened shipping and fishing activity may increase marine pollution in the area. Microplastics may enter the region following ocean transport and local input, although baseline contamination measurements are still required. Here we present the first study of microplastics in Arctic waters, south and southwest of Svalbard, Norway. Microplastics were found in surface (top 16 cm) and sub-surface (6 m depth) samples using two independent techniques. Origins and pathways bringing microplastic to the Arctic remain unclear. Particle composition (95% fibres) suggests they may either result from the breakdown of larger items (transported over large distances by prevailing currents, or derived from local vessel activity), or input in sewage and wastewater from coastal areas. Concurrent observations of high zooplankton abundance suggest a high probability for marine biota to encounter microplastics and a potential for trophic interactions. Further research is required to understand the effects of microplastic-biota interaction within this productive environment.
Key Findings
1
High concurrent zooplankton abundance indicates frequent potential encounters between microplastics and marine organisms, with possible trophic interactions.
2
Microplastics were detected in both surface waters, sampled within the upper 16 cm, and subsurface waters at 6 m depth using two independent techniques.
3
Particle composition was dominated by fibres, accounting for 95% of detected microplastics.
4
The origins and transport pathways of Arctic microplastics remain uncertain, potentially involving long-distance transport, local vessel activity, or coastal sewage and wastewater.
5
The study provides the first reported measurements of microplastics in Arctic waters south and southwest of Svalbard, Norway.
Research Object
Microplastics in Arctic waters south and southwest of Svalbard, Norway
Research Subject
The distribution, particle composition, origins, transport pathways, and potential interactions of microplastics with marine biota in surface and sub-surface Arctic waters
Publication Details
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2015-10-08
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