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从沉积物中提取微塑料:现有方法概述及新的绿色替代方案的提出。

The extraction of microplastics from sediments: An overview of existing methods and the proposal of a new and green alternative.

机构信息

Department of Science and High Technology, University of Insubria, Via Valleggio 11, 22100, Como, Italy.

Department of Human and Innovation for the Territory, University of Insubria, Via Valleggio 11, 22100, Como, Italy.

出版信息

Chemosphere. 2021 Sep;278:130357. doi: 10.1016/j.chemosphere.2021.130357. Epub 2021 Mar 30.

Abstract

Microplastics (MPs) contamination is an existing and concerning environmental issue. Plastic particles have been observed worldwide in every natural matrix, with water environments being the final sink of dispersed MPs. Microplastic distribution in water ecosystems varies as a function of multiple factors, including polymer properties (e.g., density and wettability) and environmental conditions (e.g., water currents and temperature). Because of the tendency of MPs to settle, sediment is known to be one of the most impacted environmental matrices. Despite the increasing awareness of their diffusion in sediments, a proper quantification of dispersed particles is still difficult, due to the lack of standard protocols, which avoid a proper comparison of different sites. This hampers the current knowledge on environmental implications and toxicological effects of MPs in sediments. In this work, we examined 49 studies carried out from 2004 to 2020 to describe the different extraction methods applied, and to highlight pros and cons, with the aim of evaluating the more promising protocols. Therefore, we evaluated each proposed method by considering precision, reproducibility, economic viability and greenness (in term of used reagents). Finally, we proposed a valid alternative procedure in term of reliability and costs, which can attract increasing interest for future studies.

摘要

微塑料(MPs)污染是一个现存且令人担忧的环境问题。已经在全球范围内的每一种自然基质中观察到了塑料颗粒,水生态系统是分散 MPs 的最终归宿。微塑料在水生态系统中的分布随多种因素而变化,包括聚合物特性(例如密度和润湿性)和环境条件(例如水流和温度)。由于 MPs 倾向于沉降,因此沉积物是受影响最严重的环境基质之一。尽管人们越来越意识到它们在沉积物中的扩散,但由于缺乏标准协议,仍然难以对分散颗粒进行适当的定量,从而无法对不同地点进行适当的比较。这阻碍了目前对 MPs 在沉积物中的环境影响和毒理学效应的认识。在这项工作中,我们研究了 2004 年至 2020 年期间进行的 49 项研究,以描述所应用的不同提取方法,并强调其优缺点,目的是评估更有前途的方案。因此,我们通过考虑精度、重现性、经济可行性和绿色性(所用试剂)来评估每种提出的方法。最后,我们提出了一种在可靠性和成本方面具有优势的替代程序,该程序可能会引起未来研究的更多关注。

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