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比较大型欧洲河流水中和底泥中的微塑料。

Comparative assessment of microplastics in water and sediment of a large European river.

机构信息

Goethe University Frankfurt am Main, Department Aquatic Ecotoxicology, Faculty of Biological Sciences, Max-von-Laue-Str. 13, 60438 Frankfurt am Main, Germany; Federal Institute of Hydrology, Department Biochemistry, Ecotoxicology, Am Mainzer Tor 1, 56068 Koblenz, Germany.

Goethe University Frankfurt am Main, Department Aquatic Ecotoxicology, Faculty of Biological Sciences, Max-von-Laue-Str. 13, 60438 Frankfurt am Main, Germany.

出版信息

Sci Total Environ. 2020 Oct 10;738:139866. doi: 10.1016/j.scitotenv.2020.139866. Epub 2020 Jun 2.

Abstract

Aquatic ecosystems are globally contaminated with microplastics (MP). However, comparative data on MP levels in freshwater systems is still scarce. Therefore, the aim of this study is to quantify MP abundance in water and sediment of the German river Elbe using visual, spectroscopic (Fourier-transform infrared spectroscopy) and thermo analytical (pyrolysis gas chromatography mass spectrometry) methods. Samples from eleven German sites along the German part of the Elbe were collected, both in the water and sediment phase, in order to better understand MP sinks and transport mechanisms. MP concentrations differed between the water and sediment phase. Sediment concentrations (mean: 3,350,000 particles m, 125-5000 μm MP) were in average 600,000-fold higher than water concentrations (mean: 5.57 particles m, 150-5000 μm MP). The abundance varied between the sampling sites: In sediments, the abundance decreased in the course of the river while in water samples no such clear trend was observed. This may be explained by a barrage retaining sediments and limiting tidal influence in the upstream parts of the river. Particle shape differed site-specifically with one site having exceptionally high quantities of spheres, most probably due to industrial emissions of PS-DVB resin beads. Suspended MP consisted predominantly of polyethylene and polypropylene whereas sediments contained a higher diversity of polymer types. Determined MP concentrations correspond well to previous results from other European rivers. In a global context, MP levels in the Elbe relate to the lower (water) to middle section (sediment) of the global range of MP concentrations determined for rivers worldwide. This highlights that elevated MP levels are not only found in single countries or continents, but that MP pollution is an issue of global concern.

摘要

水生生态系统在全球范围内受到微塑料(MP)的污染。然而,关于淡水系统中 MP 水平的比较数据仍然很少。因此,本研究的目的是使用可见光谱(傅里叶变换红外光谱)和热分析(热解气相色谱-质谱)方法量化德国易北河水中和沉积物中 MP 的丰度。从易北河德国段的 11 个德国地点采集了水样和沉积物样,以便更好地了解 MP 的汇和输运机制。水中和沉积物中的 MP 浓度存在差异。沉积物浓度(平均值:3,350,000 个颗粒 m,125-5000 μm MP)平均比水浓度(平均值:5.57 个颗粒 m,150-5000 μm MP)高 600,000 倍。各采样点的丰度存在差异:在沉积物中,随着河流的流动,丰度逐渐降低,而在水样中则没有观察到这种明显的趋势。这可能是由于拦河坝截留沉积物,限制了河流上游的潮汐影响所致。颗粒形状具有特定的站点差异,一个站点具有异常高数量的球体,这很可能是由于 PS-DVB 树脂珠的工业排放造成的。悬浮 MP 主要由聚乙烯和聚丙烯组成,而沉积物则含有更多种类的聚合物。测定的 MP 浓度与其他欧洲河流的先前结果非常吻合。在全球范围内,易北河的 MP 浓度处于全球范围内河流 MP 浓度范围的较低(水)到中(沉积物)段。这突出表明,高 MP 水平不仅在个别国家或大陆存在,而且 MP 污染是一个全球性关注的问题。

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