Literature DB >> 30158309

Rapid aggregation of biofilm-covered microplastics with marine biogenic particles.

Jan Michels1, Angela Stippkugel2, Mark Lenz3, Kai Wirtz4, Anja Engel2.   

Abstract

Ocean plastic pollution has resulted in a substantial accumulation of microplastics in the marine environment. Today, this plastic litter is ubiquitous in the oceans, including even remote habitats such as deep-sea sediments and polar sea ice, and it is believed to pose a threat to ecosystem health. However, the concentration of microplastics in the surface layer of the oceans is considerably lower than expected, given the ongoing replenishment of microplastics and the tendency of many plastic types to float. It has been hypothesized that microplastics leave the upper ocean by aggregation and subsequent sedimentation. We tested this hypothesis by investigating the interactions of microplastics with marine biogenic particles collected in the southwestern Baltic Sea. Our laboratory experiments revealed a large potential of microplastics to rapidly coagulate with biogenic particles, which substantiates this hypothesis. Together with the biogenic particles, the microplastics efficiently formed pronounced aggregates within a few days. The aggregation of microplastics and biogenic particles was significantly accelerated by microbial biofilms that had formed on the plastic surfaces. We assume that the demonstrated aggregation behaviour facilitates the export of microplastics from the surface layer of the oceans and plays an important role in the redistribution of microplastics in the oceans.
© 2018 The Author(s).

Entities:  

Keywords:  marine plastic pollution; microbial biofilms; microplastics aggregation behaviour

Mesh:

Substances:

Year:  2018        PMID: 30158309      PMCID: PMC6125906          DOI: 10.1098/rspb.2018.1203

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  37 in total

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Review 6.  Microplastics in the Antarctic marine system: An emerging area of research.

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Review 2.  Marine Gel Interactions with Hydrophilic and Hydrophobic Pollutants.

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Review 3.  The Urban River Syndrome: Achieving Sustainability Against a Backdrop of Accelerating Change.

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4.  Ostreopsis cf. ovata Bloom in Currais, Brazil: Phylogeny, Toxin Profile and Contamination of Mussels and Marine Plastic Litter.

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5.  A global mass budget for positively buoyant macroplastic debris in the ocean.

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7.  Sinking of microbial-associated microplastics in natural waters.

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