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土壤中的不可生物降解微塑料:简要综述与挑战。

Non-biodegradable microplastics in soils: A brief review and challenge.

机构信息

Northeast Agricultural University, 600 Changjiang Rd, Harbin 150030, PR China.

Northeast Agricultural University, 600 Changjiang Rd, Harbin 150030, PR China.

出版信息

J Hazard Mater. 2021 May 5;409:124525. doi: 10.1016/j.jhazmat.2020.124525. Epub 2020 Nov 10.

Abstract

Non-biodegradable microplastics (MPs) pollution long-termly existed in soils, and was only concerned in recent years. In order to better understand MP behavior in soils, the sources, migration, distribution, biological effects, degradation and analytical methodology of non-biodegradable MPs in soils were quantificationally summarized from 170 publications based on Web of Science in 1950-2020. From the publications, we found these studies were mainly carried out in the Asia (60.0%) and Europe (23.3%), and most were on agricultural soils (68.5%). Polyethylene-MP (78.8% of the studies), Polypropylene-MP (78.8%), and Polystyrene-MP (45.5%) were the MPs most frequently found in the soils, with a MP size of 20-5000 µm being most common. Of the soil samples 64.3% contained MP 1000-4000 items kg, and the colour frequency ranking is blue (66.7%) > white (61.1%) ≈ red ≈ black. MPs changed the soil microenvironment and microorganism activity, and caused the negative effects on both soil animals (100%) and plants (57.9%). MP degradation was influenced by the photooxidation reactions, microorganism activities, enzymatic effects, environmental conditions, and by the composition, size and morphology of the MPs. An optional analytical method was suggested in this study. At the end of paper, the urgent and important research work in the future was prospected.

摘要

不可生物降解的微塑料(MPs)在土壤中长期存在,直到近年来才受到关注。为了更好地了解 MPs 在土壤中的行为,本研究基于 1950-2020 年在 Web of Science 上发表的 170 篇文献,从来源、迁移、分布、生物效应、降解和分析方法等方面对土壤中不可生物降解 MPs 的定量进行了综述。从文献中发现,这些研究主要集中在亚洲(60.0%)和欧洲(23.3%),且主要集中在农业土壤(68.5%)。在土壤中最常发现的 MPs 为聚乙烯-MP(占研究的 78.8%)、聚丙烯-MP(78.8%)和聚苯乙烯-MP(45.5%),MP 尺寸最常见的为 20-5000μm。在采集的土壤样本中,64.3%含有 1000-4000 个 MPs·kg,颜色频率排序为蓝色(66.7%)>白色(61.1%)≈红色≈黑色。 MPs 改变了土壤微环境和微生物活性,对土壤动物(100%)和植物(57.9%)均产生了负面影响。MP 降解受光氧化反应、微生物活性、酶作用、环境条件以及 MPs 的组成、尺寸和形态的影响。本研究还提出了一种可选的分析方法。最后,展望了未来急需开展的重要研究工作。

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