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Size/shape-dependent migration of microplastics in agricultural soil under simulative and natural rainfall

The Science of The Total Environment 2021 132 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Aoyun Mo, Jie Jiang, Defu He Jie Jiang, Xiaoting Zhang, Jie Jiang, Xiaoting Zhang, Defu He Xiaoting Zhang, Xinyu Li, Xinyu Li, Xinyu Li, Xinyu Li, Defu He Xinyu Li, Xinyu Li, Xinyu Li, Wei Gao, Defu He Wei Gao, Wei Gao, Wei Gao, Aoyun Mo, Yingxin Chen, Yingxin Chen, Aoyun Mo, Xinyu Li, Xinyu Li, Xiaoting Zhang, Defu He Xiaoting Zhang, Defu He Aoyun Mo, Aoyun Mo, Yingxin Chen, Xinyu Li, Aoyun Mo, Xiaoting Zhang, Xiaoting Zhang, Xinyu Li, Xinyu Li, Defu He Xinyu Li, Jie Jiang, Xiaoting Zhang, Aoyun Mo, Xinyu Li, Wei Gao, Xiaoting Zhang, Aoyun Mo, Yingxin Chen, Defu He Wei Gao, Defu He Defu He Wei Gao, Jie Jiang, Xinyu Li, Defu He Xiaoting Zhang, Xinyu Li, Yalin Zhang, Jie Jiang, Jie Jiang, Jie Jiang, Jie Jiang, Xinyu Li, Xinyu Li, Xiaoting Zhang, Defu He Defu He Yalin Zhang, Yalin Zhang, Wei Gao, Defu He Defu He Defu He Jie Jiang, Jie Jiang, Defu He Xiaoting Zhang, Xinyu Li, Xinyu Li, Wei Gao, Aoyun Mo, Yingxin Chen, Yingxin Chen, Yingxin Chen, Jie Jiang, Wei Gao, Jie Jiang, Defu He Defu He Defu He Yingxin Chen, Jie Jiang, Defu He Jie Jiang, Defu He Defu He Xiaoting Zhang, Jie Jiang, Aoyun Mo, Jie Jiang, Aoyun Mo, Jie Jiang, Jie Jiang, Jie Jiang, Aoyun Mo, Aoyun Mo, Defu He Defu He Defu He Jie Jiang, Defu He Defu He Jie Jiang, Defu He Defu He Defu He Defu He Jie Jiang, Jie Jiang, Defu He Defu He Defu He

Summary

Researchers found that microplastic migration in agricultural soil under rainfall depends on particle size and shape, with smaller particles moving deeper and rainfall intensity significantly influencing vertical transport patterns in soil profiles.

Polymers

Agricultural soil is a sink of microplastics (MPs) in the environment. MPs in topsoil can be transferred deeply or into surrounding water by rainfall. However, little is known about rainfall-induced migration pattern of different MPs in agricultural soil. In this study, soil leaching experiments of 21 d were performed on Nile red-stained size-different polyethylene terephthalate (PET) particles, and shape-different polyethylene (PE) MPs under simulated or natural rainfall. Results showed that simulated rainfall of 5-25 mm/d caused intensity-dependent migration of MPs in horizontal and vertical directions. Maximum migration depth of MP particles arrived up to 4-7 cm. Rise of soil slopes could significantly increase horizontal mobility of MPs. Comparatively, natural rainfall of similar intensity caused relatively high mobility of MPs. Moreover, under both simulative and natural rainfall, mobility of MPs presented size/shape-different characteristics. Comparatively, small-size MPs (especially <1 mm) showed relatively high mobility in horizontal or vertical direction, and had high-frequency presence in runoff water. Of four MPs' shapes, fiber and film had relatively high mobility in comparison to particles. These results indicate that rainfall can cause size/shape-dependent migration of MPs in agricultural soil. It suggests size/shape-different environment fate of MPs, and provides a reference for MP control.

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