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The Effect of Microplastic on the Uptake of Chemicals by the Lugworm Arenicola marina (L) under Environmentally Relevant Exposure Conditions

机译:在与环境有关的暴露条件下,微塑料对夜蛾(Lugworm Arenicola marina)(L)吸收化学物质的影响

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摘要

It has been hypothesized that ingestion of microplastic increases exposure of aquatic organisms to hydrophobic contaminants. To date, most laboratory studies investigated chemical transfer from ingested microplastic without taking other exposure pathways into account. Therefore, we studied the effect of polyethylene (PE) microplastic in sediment on PCB uptake by Arenicola marina '. as a model species, quantifying uptake fluxes from all natural exposure pathways. PCB concentrations in sediment, biota lipids (C^) and porewater measured with passive samplers were used to derive lipid-normalized bioaccumulation metrics Qjp, Biota sediment accumulation factor (BSAF), Bioaccumu- | lation factor (BAF) and the Biota plastic accumulation factor (BPAF). Small effects of PE addition were detected suggesting slightly increased or decreased bioaccumulation. However, the differences decreased in magnitude dependent on the metric used to assess bioaccumulation, in the order: Clip > BSAF > BPAF > BAF, and were nonsignificant for BAF. The fact that BAF, that is, normalization of CL on porewater concentration, largely removed all effects of PE, shows that PE did not act as a measurable vector of PCBs. Biodynamic model analysis confirmed that PE ingestion contributed marginally to bioaccumulation. This work confirmed model-based predictions on the limited relevance of microplastic for bioaccumulation under environmentally realistic conditions, and illustrated the importance of assessing exposure through all media in microplastic bioaccumulation studies.
机译:假设摄入微塑料会增加水生生物对疏水性污染物的暴露。迄今为止,大多数实验室研究都在不考虑其他接触途径的情况下研究了从摄入的塑料中转移化学物质的过程。因此,我们研究了沉积物中的聚乙烯(PE)微塑料对Arenicola marina'对PCB吸收的影响。作为模型物种,可以量化所有自然暴露途径的摄取通量。用被动采样器测量沉积物中的PCB浓度,生物区脂质(C ^)和孔隙水中的PCB浓度可得出脂质归一化生物累积量度Qjp,生物区沉积物累积因子(BSAF),生物累积量| |。相关系数(BAF)和Biota可塑性累积系数(BPAF)。检测到添加PE的影响较小,表明生物蓄积量略有增加或减少。但是,差异的大小取决于用于评估生物蓄积的度量,顺序为:剪辑> BSAF> BPAF> BAF,而对于BAF则无意义。 BAF(即CL对孔隙水浓度的归一化)在很大程度上消除了PE的所有影响,这一事实表明PE不能作为PCB的可测量载体。生物动力学模型分析证实,PE摄入对生物蓄积的贡献很小。这项工作证实了在环境现实条件下,基于模型的预测对微塑料与生物积累的相关性有限,并说明了在微塑料生物积累研究中评估所有介质的暴露的重要性。

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  • 来源
    《Environmental Science & Technology》 |2017年第15期|8795-8804|共10页
  • 作者单位

    Aquatic Ecology and Water Quality Management Group, Wageningen University & Research, P.O. Box 47, 6700 AA Wageningen, The Netherlands,Wageningen Marine Research, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

    Wageningen Marine Research, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

    Wageningen Marine Research, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

    Aquatic Ecology and Water Quality Management Group, Wageningen University & Research, P.O. Box 47, 6700 AA Wageningen, The Netherlands,Wageningen Marine Research, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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