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Microplastic pollution in soils, plants, and animals: A review of distributions, effects and potential mechanisms

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 850, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2022.157857

关键词

Microplastic; Bioaccumulation; Environmental pollution; Toxicological effect; Soil -plant -animal system; Food chain

资金

  1. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA28020400, XDA28080400, XDA26040305, XDA23070503]
  2. Technology Cooperation High-Tech Industrialization Project of Jilin Province
  3. Chinese Academy of Sciences [2021SYHZ0033]
  4. Youth Innovation Promotion Association of the Chinese Academy of Sciences [Y201949]

向作者/读者索取更多资源

Increasing production of synthetic plastics and poor management of plastic wastes have led to a significant increase in the amount of plastics in the environment. Marine plastic waste pollution has been listed as one of the top 10 pressing environmental issues. Microplastics (MPs) as a recognized pollutant have attracted attention from the public and governments. Studies have shown that MPs have negative effects on the environment and organisms.
Increasing production of synthetic plastics and poor management of plastic wastes have dramatically increased the amount of plastics in the environment. In 2014, at the first United Nations Environment Assembly, marine plastic waste pollution was listed as one of the 10 most pressing environmental issues. In addition, there is much plastic waste in terrestrial ecosystems due to substantial residues from agricultural mulching and packing. As a recently recognized pollutant, microplastics (MPs) have attracted significant attention from the public and various governments. Concentrations of MPs in the environment vary among locations, from <100 to >1 x 106 particles per cubic meter. Many studies have addressed the impacts and potential mechanisms of MPs on the environment and organisms. Humans and other organisms can ingest or carry MPs in a variety of passive ways and these MPs can have a range of negative effects on metabolism, function, and health. Additionally, given their large surface area, MPs can sorb various pollutants, including heavy metals and persistent organic pollutants, with serious implications for animals and human wellbeing. However, due to their complexity and a lack of accurate determination methods, the systematic impacts of MP pollution on whole foodwebs are not clearly established. Therefore, this review summarizes current research advances in MP pollution, particularly the impact of MPs on soils, plants, and animals, and proposes potential future research prospects to better characterize MPs.

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