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微塑料地膜影响土壤中农药残留吸附和降解的环境行为。

Microplastics mulch film affects the environmental behavior of adsorption and degradation of pesticide residues in soil.

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, Henan, 455000, China; Zhengzhou Research Base, State Key Laboratory of Cotton Biology, School of Agricultural Sciences, Zhengzhou University, 450001, Zhengzhou, China.

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, Henan, 455000, China.

出版信息

Environ Res. 2022 Nov;214(Pt 4):114133. doi: 10.1016/j.envres.2022.114133. Epub 2022 Aug 19.

Abstract

Plastic pollution in the soil ecosystem is currently receiving worldwide attention. However, little is known whether the presence of microplastics (MPs) in soil will affect the environmental behavior of pesticide residues in soil. Here, the effect of the addition of new mulch MPs (New-MPs), aged mulch MPs (Aged-MPs) and biodegradable mulch MPs (BioD-MPs) on the adsorption and degradation behaviors of two pesticides (imidacloprid and flumioxazin) in soil was investigated. Three MPs slowed down rapid adsorption stage of pesticides in soil and delayed the time to reach adsorption equilibrium. Adsorption rates: Soil > Soil + New-MPs > Soil + Aged-MPs > Soil + BioD-MPs. Three MPs enhanced the adsorption strength of the soil system for the two pesticides, and the aging treatment of the MPs enhanced this effect. Three MPs affected the degradation process of the two pesticides. New-MPs promoted the degradation of two pesticides imidacloprid and flumioxazin, and the degradation half-lives were shortened to 0.93 and 0.85 times, respectively; while Aged-Mps and BioD-MPs delayed the degradation process of two pesticides, and the degradation half-lives were extended to 1.64 times and 1.21 times, respectively. The effect was more significant with the increase of MPs and pesticides concentration. Pesticide polarity, surface structure and functional groups of MPs are potentially important reasons for the differences in adsorption and degradation of MPs-soil systems. Our findings provide a deep insight into understanding the mechanism of interaction between MPs and pesticide residues in soil environment.

摘要

土壤生态系统中的塑料污染目前受到全球关注。然而,人们对于土壤中存在的微塑料(MPs)是否会影响土壤中农药残留的环境行为知之甚少。在这里,研究了新覆盖物 MPs(New-MPs)、老化覆盖物 MPs(Aged-MPs)和可生物降解覆盖物 MPs(BioD-MPs)的添加对两种土壤中农药(吡虫啉和氟草烟)吸附和降解行为的影响。三种 MPs 减缓了土壤中农药的快速吸附阶段,并延迟了达到吸附平衡的时间。吸附率:土壤>土壤+新 MPs>土壤+老化 MPs>土壤+可生物降解 MPs。三种 MPs 增强了土壤系统对两种农药的吸附强度,而 MPs 的老化处理增强了这种效果。三种 MPs 影响了两种农药的降解过程。新 MPs 促进了两种农药吡虫啉和氟草烟的降解,降解半衰期分别缩短至 0.93 和 0.85 倍;而老化 MPs 和可生物降解 MPs 则延迟了两种农药的降解过程,降解半衰期分别延长至 1.64 倍和 1.21 倍。随着 MPs 和农药浓度的增加,效果更为显著。农药的极性、 MPs 的表面结构和官能团可能是 MPs-土壤系统吸附和降解差异的重要原因。我们的研究结果深入了解了 MPs 与土壤环境中农药残留相互作用的机制。

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