4.7 Article

Effects of seasonal variation and resuspension on microplastics in river sediments

Journal

ENVIRONMENTAL POLLUTION
Volume 286, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2021.117403

Keywords

Microplastics; River sediment; Seasonal variation; Environmental behavior

Funding

  1. National Natural Science Foundation of China [51638006, 51868011]
  2. Department of Science and Technology of Guangxi [2018GXNSFGA281001]
  3. Special Fund for Guangxi Distinguished Experts

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This study investigated the occurrence and seasonal variation of microplastics in the sediments of Liangfeng River in China. Results showed higher abundance of microplastics in sediments during the dry season compared to the rainy season, with polyethylene being the most abundant polymer. Small-sized microplastics can potentially migrate and redistribute via resuspension at different temporal and spatial scales.
Although microplastics are an emerging pollutant of global concern, little is known about the environmental behavior of microplastic in sediments. This study investigated the occurrence and seasonal variation of microplastics in the sediments of Liangfeng River, China with a fluorescence staining method, and then explored the transfer of microplastics at the water and sediment interfaces during resuspension. The results showed that smaller microplastics were detected in the sediments, which were concentrated in the size range of 50-500 mu m. Microplastic abundance in the sediments in the dry season were slightly higher than those from the rainy season, and the rainy season promotes the accumulation of smaller microplastics in the sediment along the river-flow direction but not for the dry season. The shape of microplastics were predominantly fibers, followed by fragments and films. Polyethylene was the most abundant polymer, accounting for more than 50% of the total. Microplastics in the surface sediment move both to the overlying water and deeper sediment during the disturbance process. Disturbance-induced resuspension and vertical transport have significant effects on smallsized microplastics (50-500 mu m). Small-sized microplastics can potentially migrate and redistribute via resuspension at different temporal and spatial scales, as some extent of resuspension is occurring in most river systems, especially in urban areas with boat traffic.

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