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制造浪潮:水可溶性聚合物在水生环境中:一类被忽视的合成聚合物?

Making waves: Water-soluble polymers in the aquatic environment: An overlooked class of synthetic polymers?

机构信息

Hochschule Fresenius, University of Applied Sciences, Limburger Straße 2, 65510, Idstein, Germany.

Helmholz Centre for Environmental Research - UFZ, Department of Analytical Chemistry, Permoserstrasse 15, 04318, Leipzig, Germany; University of Leipzig, Institute of Analytical Chemistry, Linnéstrasse 3, 04103, Leipzig, Germany.

出版信息

Water Res. 2020 Aug 15;181:115931. doi: 10.1016/j.watres.2020.115931. Epub 2020 May 18.

Abstract

Synthetic polymers have been one of the defining environmental topics of the last decade. Synthetic polymers in the environment are usually classified by their size. They encompass the widely discussed size fractions of macroplastic, microplastic, and nanoplastic. Water-soluble polymers (WSPs), however, are mostly absent in this discussion. In this paper, we argue that WSPs are produced in large quantities and have many applications that facilitate a discharge into the environment, where their fate and impact remain mostly unclear. We argue that there are yet no suitable analytical methods for the quantification of WSPs in environmental matrices and propose an analytical method that utilizes size exclusion chromatography - mass spectrometry to detect and potentially also quantify WSPs through specific fragments generated by in-source fragmentation. With the detection of polyethylene glycol in a wastewater treatment plant effluent and a surface water sample we provide a first prove of principle for the applicability of this novel analytical approach to WSPs. Ultimately, we conclude that WSPs are currently in a similar position as MP were in the advent of their investigation: We know of an environmental contamination but are uncertain of its extent and impact and still lack the tools to investigate them thoroughly.

摘要

合成聚合物是过去十年中环境领域的重要议题之一。环境中的合成聚合物通常根据其大小进行分类。它们包括广泛讨论的宏观塑料、微塑料和纳米塑料等大小的部分。然而,水溶性聚合物 (WSP) 在这一讨论中大多没有涉及。在本文中,我们认为 WSP 的产量很大,并且有许多应用会导致其排放到环境中,而其在环境中的归宿和影响在很大程度上仍不清楚。我们认为目前还没有适用于环境基质中 WSP 定量分析的方法,因此提出了一种利用尺寸排阻色谱-质谱法的分析方法,通过源内碎裂产生的特定片段来检测和潜在定量 WSP。通过检测污水处理厂废水中和地表水样本中的聚乙二醇,我们首次证明了这种新型分析方法对 WSP 的适用性。最终,我们得出结论,WSP 目前的处境与 MP 在其研究初期类似:我们已经知道存在环境污染,但不确定其范围和影响,并且仍然缺乏彻底调查它们的工具。

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