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首页> 外文期刊>Science of the total environment >Effect thresholds for the earthworm Eisenia fetida: Toxicity comparison between conventional and biodegradable microplastics
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Effect thresholds for the earthworm Eisenia fetida: Toxicity comparison between conventional and biodegradable microplastics

机译:蚯蚓艾西比亚的影响阈值:常规和可生物降解微塑料的毒性比较

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摘要

Biodegradable plastics have been developed to eliminate the progressive accumulation and ever-growing threat posed by conventional fossil fuel-derived plastics. The impact of these bioplastics, particularly in an agricultural context (e.g. biopolymer mulch films), however, remains poorly understood. In this study, we compared the biotoxicity of biodegradable (polylactic acid, PLA; polypropylene carbonate, PPC) and non-degradable (polyethylene, PE) microplastics using a series of standardized bioassays using the earthworm Eisenia fetida. The responses studied included: avoidance behavior, mortality, biomass, and reproduction responses. We incubated earthworms in artificial soils amended with different concentrations of microplastic (0, 0.125.1.25,12.5,125, 250, and 500 g kg~(-1)) under laboratory conditions. This wide range allowed linear regression modeling and estimation of microplastic effect thresholds. Our results showed that microplastic concentration rather than plastic type was more important in regulating earthworm responses to soil contamination. The critical threshold for microplastic contamination was 40 g kg~(-1), after which earthworms exhibit microplastic avoidance behavior. A significant reduction (EC_(10)) in number of cocoons and juvenile earthworms occurred at a concentration of 53 g kg~(-1) and 97 g kg~(-1), respectively; while no significant effect was found for survival of earthworm until levels of 500 g kg~(-1). Overall, the two biodegradable materials (PLA and PPC), appeared to be no more biofriendly than PE. Based on reported levels of plastic contamination in soil of up to 67 g kg~(-1), we conclude that microplastics are now starting to pose a threat to earthworm population. To better evaluate the risk posed by biodegradable and nondegradable plastics, further mechanistic studies on how microplastics affect earthworm behavior and the potential long-term impacts of this on soil functioning are required.
机译:已经开发了可生物降解的塑料,以消除常规化石燃料衍生塑料所带来的渐进积累和不断增长的威胁。然而,这些生物塑料的影响,特别是在农业环境中(例如生物聚合物覆盖膜)仍然仍然难以理解。在这项研究中,我们将生物降解的生物毒性与使用蚯蚓Eisenia fetida的一系列标准化生物测定的生物降解(聚乳酸,PLA;聚丙烯碳酸酯,PPC)和不可降解(聚乙烯,PE)微塑料的生物毒性。研究的响应包括:避免行为,死亡率,生物量和再现反应。在实验室条件下,我们在不同浓度的微塑料(0,0.125.1.25,12.5,125,250和500g kg〜1)的人造土中孵育蚯蚓。这种宽范围允许线性回归建模和微塑性效果阈值的估计。我们的结果表明,微塑浓度而不是塑料型在调节土壤污染的蚯蚓应答方面更为重要。微塑性污染的临界阈值为40g kg〜(-1),之后蚯蚓表现出微塑性避免行为。茧数和少年蚯蚓数的显着减少(EC_(10))分别以53g kg〜(-1)和97g kg〜(-1)的浓度分别发生;虽然没有发现蚯蚓生存的显着效果直至500g kg〜(-1)水平。总的来说,两种可生物降解的材料(PLA和PPC)似乎没有比PE更具生物蠕动。基于报告的土壤塑料污染水平高达67克kg〜( - 1),我们得出结论,微塑料现在开始对蚯蚓种群构成威胁。为了更好地评估可生物降解和不良塑料所带来的风险,需要对微薄塑料的进一步的机制研究来影响蚯蚓行为以及这对土壤功能的潜在的长期影响。

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  • 来源
    《Science of the total environment 》 |2021年第10期| 146884.1-146884.10| 共10页
  • 作者单位

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 PR China Key Laboratory of Prevention and Control of Residual Pollution in Agricultural Film Ministry of Agriculture and Rural Affairs Beijing 100081 PR China;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 PR China Key Laboratory of Prevention and Control of Residual Pollution in Agricultural Film Ministry of Agriculture and Rural Affairs Beijing 100081 PR China;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 PR China Key Laboratory of Prevention and Control of Residual Pollution in Agricultural Film Ministry of Agriculture and Rural Affairs Beijing 100081 PR China School of Natural Sciences Bangor University Bangor Gwynedd LL57 2UW UK;

    School of Natural Sciences Bangor University Bangor Gwynedd LL57 2UW UK SoilsWest UWA School of Agriculture and Environment The University of Western Australia Perth WA 6009 Australia;

    The Biocomposites Centre Bangor University Bangor Gwynedd LL57 2UW UK;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 PR China Key Laboratory of Prevention and Control of Residual Pollution in Agricultural Film Ministry of Agriculture and Rural Affairs Beijing 100081 PR China;

    Institute of Environment and Sustainable Development in Agriculture Chinese Academy of Agricultural Sciences Beijing 100081 PR China Key Laboratory of Prevention and Control of Residual Pollution in Agricultural Film Ministry of Agriculture and Rural Affairs Beijing 100081 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic mulching film; Microplastic safety; Earthworm response; Biotoxicity; Effect threshold;

    机译:塑料覆盖薄膜;微塑性安全;蚯蚓反应;生物毒性;效果门槛;

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