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环境基质中微塑料识别与定量的前沿技术及面临的挑战

Promising techniques and open challenges for microplastic identification and quantification in environmental matrices.

作者信息

Zarfl Christiane

机构信息

Center for Applied Geosciences, Eberhard Karls University of Tübingen, Hölderlinstr. 12, 72074, Tübingen, Germany.

出版信息

Anal Bioanal Chem. 2019 Jul;411(17):3743-3756. doi: 10.1007/s00216-019-01763-9. Epub 2019 Mar 27.

Abstract

Microplastics are observed ubiquitously and in different environmental compartments ranging from marine waters and sediments to freshwater and terrestrial ecosystems including biota. Over the last decade, several methods have been applied and advanced to monitor and quantify microplastics, to identify the polymer material and to describe the particle properties, such as size, shape or colour. In most cases, the overarching aim is to elucidate patterns of occurrence that might result from (micro)plastic emissions and environmental fate. But the applied methods are subject to uncertainties and boundary conditions, be it spatial resolution that excludes the smallest microplastics or limitations in distinguishing microplastic particles from natural particles. This critical review provides an overview of the state-of-the-art procedures in microplastic analysis, gives examples of potential ways ahead and remaining challenges and classifies available methods according to the underlying research question. The resulting decision tree for the selection of analytical methods starts with a common research question and takes specificities of the environmental matrix into account. The procedural range consequently ranges from fast screening methods based on visual identification to a highly sophisticated combination of analytical methods that provide information on polymer type, particle number or mass and eventually particle size but are very time-consuming and expensive. Standardization of microplastic analytical methods on the basis of the research aim will help to make study results comparable and obtain a more comprehensive picture of microplastic abundance and fate in the environment. Graphical abstract.

摘要

微塑料在各种环境介质中普遍存在,从海水和沉积物到淡水以及包括生物群在内的陆地生态系统。在过去十年中,已经应用并改进了几种方法来监测和量化微塑料,识别聚合物材料,并描述颗粒特性,如尺寸、形状或颜色。在大多数情况下,总体目标是阐明可能由(微)塑料排放和环境归宿导致的出现模式。但是所应用的方法存在不确定性和边界条件,无论是排除最小微塑料的空间分辨率,还是区分微塑料颗粒与天然颗粒的局限性。这篇批判性综述概述了微塑料分析的最新程序,给出了未来潜在方向和剩余挑战的示例,并根据潜在的研究问题对现有方法进行了分类。由此产生的分析方法选择决策树从一个共同的研究问题开始,并考虑环境基质的特殊性。因此,程序范围从基于视觉识别的快速筛选方法到高度复杂的分析方法组合,这些方法提供有关聚合物类型、颗粒数量或质量以及最终颗粒尺寸的信息,但非常耗时且昂贵。基于研究目的对微塑料分析方法进行标准化将有助于使研究结果具有可比性,并更全面地了解微塑料在环境中的丰度和归宿。图形摘要。

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