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Effect of weathering on environmental behavior of microplastics: Properties, sorption and potential risks

机译:风化对微塑料环境行为的影响:性质,吸附和潜在风险

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Microplastic (MP) pollution is a raising global concern in recent years due to its wide distribution. Additionally, most of the MPs have undergone extensive weathering in the environment, and weathered MPs may exhibit different physicochemical properties from pristine ones. The review reveals the change in physicochemical properties (e.g. size, color, crystallinity, mechanical property and oxygen-containing groups) and the release of additives and MP-derived intermediates (i.e. oligomers and oxygenated compounds) during weathering processes. Weathering further affects the sorption behavior of MPs for environmental pollutants because of the changed crystallinity, specific surface area and oxygen functional groups. The interaction mechanisms of pristine and weathered MPs with pollutants are summarized, and how weathering processes affect sorption behavior is critically revealed. Because of the changed size, color and surface charges, weathered MPs might be ingested by aquatic organisms in different ways from the pristine ones. The detailed effects of weathering on the ingestion of MPs are discussed, and the potential toxicity of leachates from weathering processes is evaluated. In addition, the environmental components (e.g. natural organic matter and salinity) and biofilm correlated to the sorption behavior of MPs are reviewed. As for the knowledge gap, further studies should focus on the long-term weathering of MPs and the relationships between weathering properties and sorption capacities toward pollutants. The potential risks of weathered MPs and leachates on organisms should be explored. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近年来,由于其分布广泛,微塑料(MP)污染引起了全球关注。此外,大多数国会议员在环境中经历了广泛的风化,风化的国会议员可能表现出不同的理化性质与原始的。审查揭示了在风化过程中物理化学性质(例如尺寸,颜色,结晶度,机械性质和含氧基团)的变化以及添加剂和MP衍生的中间体(即低聚物和含氧化合物)的释放。由于结晶度,比表面积和氧官能团的变化,风化进一步影响了MP对环境污染物的吸附行为。总结了原始的和风化的MP与污染物的相互作用机理,并揭示了风化过程如何影响吸附行为。由于大小,颜色和表面电荷的变化,水生生物可能以与原始生物不同的方式摄入风化的MP。讨论了风化对MP摄入的详细影响,并评估了风化过程中浸出液的潜在毒性。此外,还审查了与MP吸附行为相关的环境成分(例如天然有机物和盐度)和生物膜。关于知识差距,进一步的研究应侧重于MP的长期风化以及风化性质与对污染物的吸附能力之间的关系。应探讨风化的国会议员和沥滤液对生物体的潜在风险。 (C)2019 Elsevier Ltd.保留所有权利。

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