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描述环境介质中微塑料的多维性。

Characterizing the multidimensionality of microplastics across environmental compartments.

机构信息

Aquatic Ecology and Water Quality Management Group, Wageningen University & Research, The Netherlands.

Shelf Seas Systems Ecology, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, Germany.

出版信息

Water Res. 2021 Sep 1;202:117429. doi: 10.1016/j.watres.2021.117429. Epub 2021 Jul 14.

Abstract

Understanding the multidimensionality of microplastics is essential for a realistic assessment of the risks these particles pose to the environment and human health. Here, we capture size, shape, area, polymer, volume and mass characteristics of >60,000 individual microplastic particles as continuous distributions. Particles originate from samples taken from different aquatic compartments, including surface water and sediments from the marine and freshwater environment, waste water effluents, and freshwater organisms. Data were obtained using state-of-the-art FTIR-imaging, using the same automated imaging post-processing software. We introduce a workflow with two quality criteria that assure minimum data quality loss due to volumetric and filter area subsampling. We find that probability density functions (PDFs) for particle length follow power law distributions, with median slopes ranging from 2.2 for marine surface water to 3.1 for biota samples, and that these slopes were compartment-specific. Polymer-specific PDFs for particle length demonstrated significant differences in slopes among polymers, hinting at polymer specific sources, removal or fragmentation processes. Furthermore, we provide PDFs for particle width, width to length ratio, area, specific surface area, volume and mass distributions and propose how these can represent the full diversity of toxicologically relevant dose metrics required for the assessment of microplastic risks.

摘要

理解微塑料的多维性对于现实评估这些颗粒对环境和人类健康构成的风险至关重要。在这里,我们捕捉了超过 60000 个单个微塑料颗粒的大小、形状、面积、聚合物、体积和质量特征作为连续分布。颗粒来源于从不同水相采集的样本,包括海洋和淡水环境的地表水和沉积物、废水流出物以及淡水生物。数据是使用最先进的 FTIR 成像技术,使用相同的自动成像后处理软件获得的。我们引入了一个具有两个质量标准的工作流程,以确保由于体积和过滤面积的抽样而导致的最小数据质量损失。我们发现,颗粒长度的概率密度函数 (PDF) 遵循幂律分布,中位数斜率范围从海洋地表水的 2.2 到生物样本的 3.1,并且这些斜率是特定于隔室的。聚合物特异性颗粒长度 PDF 表明,聚合物之间的斜率存在显著差异,暗示着聚合物特异性的来源、去除或碎片化过程。此外,我们提供了颗粒宽度、宽度与长度比、面积、比表面积、体积和质量分布的 PDF,并提出了如何用这些 PDF 来表示评估微塑料风险所需的、具有毒理学相关性的剂量指标的全部多样性。

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