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Minimal Impacts of Microplastics on Soil Physical Properties under Environmentally Relevant Concentrations

Environmental Science & Technology 2023 145 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yingxue Yu, Yingxue Yu, Yingxue Yu, Markus Flury Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Yingxue Yu, Markus Flury Yingxue Yu, Yingxue Yu, Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Yingxue Yu, Markus Flury Markus Flury Markus Flury Anil Krishna Battu, Yingxue Yu, Markus Flury Markus Flury Markus Flury Tahsin Md. Zahid, Markus Flury Tamás Varga, Yingxue Yu, Indranil Chowdhury, Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Indranil Chowdhury, Yingxue Yu, Markus Flury Markus Flury Adam Denny, Markus Flury Tahsin Md. Zahid, Indranil Chowdhury, Markus Flury Markus Flury Markus Flury Indranil Chowdhury, Indranil Chowdhury, Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury Markus Flury

Summary

Researchers measured the physical properties of silt loam soil after incorporating polyester fibers and polypropylene granules across a wide range of concentrations. The study found that at environmentally relevant concentrations, microplastics had minimal impacts on soil physical properties such as water retention and aggregate stability, suggesting that current contamination levels may not significantly alter soil structure.

Polymers

Agricultural soils are a major reservoir of microplastics, and concerns have arisen about the impacts of microplastics on soil properties and functioning. Here, we measured the physical properties of a silt loam in response to the incorporation of polyester fibers and polypropylene granules over a wide range of concentrations. We further elucidated the underlying mechanisms by determining the role of microplastic shape and the baseline effects from the amendment of soil particles. The incorporation of microplastics into soil tended to increase contact angle and saturated hydraulic conductivity and decrease bulk density and water holding capacity, but not affect aggregate stability. Polyester fibers affected soil physical properties more profoundly than polypropylene granules, due to the vastly different shape of fibers from that of soil particles. However, changes in soil properties were gradual, and significant changes did not occur until a high concentration of microplastics was reached (i.e., 0.5% w/w for polyester fibers and 2% w/w for polypropylene granules). Currently, microplastic concentrations in soils not heavily polluted with plastics are far below these concentrations, and results from this study suggest that microplastics at environmentally relevant concentrations have no significant effects on soil physical properties.

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