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Distribution of microplastics in mulched soil in Xinjiang, China

International journal of agricultural and biological engineering 2021 46 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yinghao Xue, Yinghao Xue, Yinghao Xue, Yinghao Xue, Hu Can, Yinghao Xue, Yinghao Xue, Yinghao Xue, Hu Can, Yinghao Xue, Wensong Guo, Wensong Guo, Xufeng Wang, Xufeng Wang, Yinghao Xue, Xufeng Wang, Yinghao Xue, Bing Lu, Bing Lu, Xufeng Wang, Xufeng Wang, Xufeng Wang, Xufeng Wang, Xufeng Wang, Wensong Guo, Wensong Guo, Wensong Guo, Wensong Guo, Wensong Guo, Wensong Guo, Hu Can, Yinghao Xue, Xiuying Tang, Xiuying Tang, Xufeng Wang, Hu Can, Yinghao Xue, Xufeng Wang, Xufeng Wang, Xufeng Wang, Xiaowei He, Xiaowei He, Xiaowei He, Yinghao Xue, Yinghao Xue, Xufeng Wang, Yinghao Xue, Yinghao Xue, Xiaowei He, Long Wang, Long Wang, Xiaowei He, Xufeng Wang, Xufeng Wang, Xiaowei He, 3. Rural Energy and Environment Agency, Ministry of Agriculture and Rural Affairs, Beijing 100125, China

Summary

Researchers studied microplastic distribution in plastic film mulched farmland soils in Xinjiang, China, using an optimised fluidization-centrifugation density flotation method, finding that plastic mulch was the dominant source of soil microplastics and characterising their morphology, size distribution, and polymer composition by Fourier spectroscopy and electron microscopy.

Body Systems

In order to study the distribution of soil microplastics in the plastic film mulched farmland, the fluidization-centrifugation secondary density flotation method was optimized and improved to obtain the samples. The main components of microplastics were analyzed by Fourier spectrometer, and the surface morphology, porosity, particle size and abundance distribution characteristics of microplastics were studied by electron microscopy. The results showed that plastic mulch is the main source of microplastics. Its morphology mainly consists of fragments, fibers and particles. The size of debris microplastics was larger, with an average of 1.6300 mm, mainly distributed in the 0-300 mm cultivation layer while the size of particle micro plastic was smaller, with an average of 0.1400 mm. The width of fiber microplastic was 5-20 μm, but the length could reach 0.2000-2.0000 mm, with an average particle size of 0.9200 mm. Fiber and granular microplastics could be seen in each soil layer. The surface layer of microplastics has a large number of pores characterized with a length of 50 μm and a width of about 5-10 μm, which might be an easy oxidation site for microplastics. This oxidation is continuous, making microplastics continuously decompose into smaller particles. The abundance of microplastics is negatively correlated with soil depth. The average abundance of microplastics is 161.50±5.20 pieces/100 g in 0-300 mm soil layer, which is their main enrichment area. However, the average abundance of microplastics decreases to 11.20±1.10 pieces/100 g in 400-800 mm soil depth. Moreover, the average particle size of microplastics is also linearly negatively correlated with soil depth. Microplastics with smaller particle size are easier to migrate as they pass through soil pores under the action of water and fertilizer. The research can provide s reference for understanding plastic mulch pollution. Keywords: soil microplastics, plastic pollution, distribution, composition DOI: 10.25165/j.ijabe.20211402.6165 Citation: Hu C, Lu B, Guo W S, Tang X Y, Wang X F, Xue Y H, et al. Distribution of microplastics in mulched soil in Xinjiang, China. Int J Agric & Biol Eng, 2021; 14(2): 196–204.

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