Controlling factors of microplastic fibre settling through a water column

Microplastic fibres are the most abundant microplastics in waterways worldwide. The settling of fibres is distinct from other particles because of their aspect ratio and shape. In this paper, we test the hypothesis that length, curliness, and settling orientation control the settling velocity of mic...

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Veröffentlicht in:The Science of the total environment 2022-09, Vol.838 (Pt 1), p.156011-156011, Article 156011
Hauptverfasser: Nguyen, Thu Ha, Kieu-Le, Thuy-Chung, Tang, Fiona H.M., Maggi, Federico
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Sprache:eng
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Zusammenfassung:Microplastic fibres are the most abundant microplastics in waterways worldwide. The settling of fibres is distinct from other particles because of their aspect ratio and shape. In this paper, we test the hypothesis that length, curliness, and settling orientation control the settling velocity of microplastic fibres in a suite of laboratory experiments. Using a Particle Tracking Velocimetry method, we measured the settling velocity of 683 polyester microplastic fibres of 1 to 4 mm in length. Experimental findings support our hypothesis that for microplastic fibre longer than 1 mm, changing settling orientation from horizontal to vertical can increase 1.7 times the settling velocity. Fibre curliness can significantly reduce the settling velocity, where a curly fibre 1.3 times longer than a straight fibre can settle 1.75 times slower. In contrast, short microplastic fibres (less than 1 mm) mostly settle horizontally, and their settling velocity is unaffected by curliness. The drag force exerting on settling microplastic fibres was analysed, and the sphere-equivalent diameter was found to be a good representation of microplastic fibre size to predict the drag coefficient. Measured settling velocity ranges between 0.1 and 0.55 mm/s and exhibits a slight increase with the increasing length of the fibres. This low-velocity range raises concerns that microplastic fibres can favour biological flocculation, form clustered aggregates with microorganisms, feed aquatic organisms and cause bioaccumulation at higher trophic levels. [Display omitted] •Settling velocities of polyester microplastic fibres of 1 to 4 mm length were experimentally measured.•Long polyester fibres settle vertically 1.7 times faster than horizontally.•Curliness of long fibres can significantly reduce the settling speed.•Short fibres mostly settle horizontally and are unaffected by their curliness.•Fibre settling velocity ranging between 0.1 and 0.55 m/s increases with the length.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2022.156011