High Levels of Microplastics in the Arctic Sea Ice Alga <i>Melosira arctica</i>, a Vector to Ice-Associated and Benthic Food Webs
Environmental Science & Technology2023
36 citations
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Score: 50
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Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Steve Allen,
Thomas Krumpen,
Melanie Bergmann
Steve Allen,
Steve Allen,
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Thomas Krumpen,
Thomas Krumpen,
Melanie Bergmann
Thomas Krumpen,
Thomas Krumpen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Thomas Krumpen,
Deonie Allen,
Thomas Krumpen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Thomas Krumpen,
Thomas Krumpen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Steve Allen,
Steve Allen,
Melanie Bergmann
Steve Allen,
Steve Allen,
Melanie Bergmann
Thomas Krumpen,
Deonie Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Deonie Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Thomas Krumpen,
Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Thomas Krumpen,
Melanie Bergmann
Deonie Allen,
Steve Allen,
Thomas Krumpen,
Melanie Bergmann
Thomas Krumpen,
Steve Allen,
Thomas Krumpen,
Thomas Krumpen,
Steve Allen,
Thomas Krumpen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Steve Allen,
Steve Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Thomas Krumpen,
Thomas Krumpen,
Thomas Krumpen,
Thomas Krumpen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Melanie Bergmann
Melanie Bergmann
Thomas Krumpen,
Steve Allen,
Deonie Allen,
Thomas Krumpen,
Thomas Krumpen,
Steve Allen,
Steve Allen,
Steve Allen,
Steve Allen,
Deonie Allen,
Melanie Bergmann
Thomas Krumpen,
Thomas Krumpen,
Thomas Krumpen,
Deonie Allen,
Deonie Allen,
Deonie Allen,
Thomas Krumpen,
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Steve Allen,
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Melanie Bergmann
Deonie Allen,
Melanie Bergmann
Steve Allen,
Steve Allen,
Melanie Bergmann
Steve Allen,
Deonie Allen,
Steve Allen,
Melanie Bergmann
Summary
Researchers discovered extremely high microplastic concentrations in the Arctic sea ice alga Melosira arctica, identifying it as a significant vector transporting microplastics from sea ice to ice-associated and deep-sea benthic food webs.
Plastic pollution has become ubiquitous with very high quantities detected even in ecosystems as remote as Arctic sea ice and deep-sea sediments. Ice algae growing underneath sea ice are released upon melting and can form fast-sinking aggregates. In this pilot study, we sampled and analyzed the ice algae<i>Melosira arctica</i>and ambient sea water from three locations in the Fram Strait to assess their microplastic content and potential as a temporary sink and pathway to the deep seafloor. Analysis by μ-Raman and fluorescence microscopy detected microplastics (≥2.2 μm) in all samples at concentrations ranging from 1.3 to 5.7 × 10<sup>4</sup> microplastics (MP) m<sup>-3</sup> in ice algae and from 1.4 to 4.5 × 10<sup>3</sup> MP m<sup>-3</sup> in sea water, indicating magnitude higher concentrations in algae. On average, 94% of the total microplastic particles were identified as 10 μm or smaller in size and comprised 16 polymer types without a clear dominance. The high concentrations of microplastics found in our pilot study suggest that<i>M. arctica</i> could trap microplastics from melting ice and ambient sea water. The algae appear to be a temporary sink and could act as a key vector to food webs near the sea surface and on the deep seafloor, to which its fast-sinking aggregates could facilitate an important mechanism of transport.