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三峡水库水跃带:水体中微塑料的源还是汇?

The hydro-fluctuation belt of the Three Gorges Reservoir: Source or sink of microplastics in the water?

机构信息

State Key Laboratory of Marine Pollution, City University of Hong Kong, Hong Kong SAR, China; State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China; University of Chinese Academy of Sciences, Beijing, 100039, China.

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China; University of Chinese Academy of Sciences, Beijing, 100039, China.

出版信息

Environ Pollut. 2019 May;248:279-285. doi: 10.1016/j.envpol.2019.02.043. Epub 2019 Feb 16.

Abstract

Reservoirs can be an important environmental compartment for microplastic pollution. Previous investigations have found that surface waters and sediments in the Three Gorges Reservoir (TGR) have had high microplastic abundance, and the Xiangxi River, which is one of the largest primary tributaries of the TGR, has had much higher microplastic abundance than several marine and freshwater systems in China. A strip of land on the bank of the reservoir area, which is called the hydro-fluctuation belt (HFB), is periodically exposed due to the special hydrodynamic conditions in the TGR. The HFB may be an important source and/or sink of microplastics in TGR. In this study, microplastic occurrence in sediments from the Xiangxi River HFB was investigated to reflect the local microplastic pollution status and to evaluate its potential to serve as a source/sink of microplastics in the TGR. Seven sampling sites were selected, and sediments within the HFB and above the belt were collected in summer when the water level was low. The results showed that the microplastic abundance ranged from 0.55 ± 0.12 × 10 to 14.58 ± 5.67 × 10 particles m, which was one to two orders of magnitude higher than that in sediments from the Xiangxi River in our previous study (80-846 particles m). Statistical analysis revealed that the microplastic abundance within the HFB was significantly higher than that of the area above the HFB. The results indicate that the HFB can be an important microplastic sink when the water level is low, and the belt can turn into a potential source when the water level is high. Cluster analysis was applied to reveal the characteristics of the microplastics collected at different sites, and the results suggest that the cluster analysis may be a useful tool in elucidating the source and fate of microplastics.

摘要

水库是微塑料污染的一个重要环境介质。先前的研究发现,三峡水库(TGR)的地表水和沉积物中微塑料丰度较高,而作为 TGR 最大的一级支流之一的香溪河,其微塑料丰度远高于中国的几个海洋和淡水系统。由于 TGR 的特殊水动力条件,库区的一片土地,即水位波动带(HFB),会周期性地暴露出来。HFB 可能是 TGR 中微塑料的重要源区和/或汇区。本研究调查了香溪河 HFB 沉积物中的微塑料存在情况,以反映当地的微塑料污染状况,并评估其作为 TGR 中微塑料源/汇的潜力。选择了七个采样点,在水位较低的夏季,采集了 HFB 内和 HFB 上方的沉积物。结果表明,微塑料丰度范围为 0.55 ± 0.12×10 至 14.58 ± 5.67×10 颗粒 m,比我们之前在香溪河中研究的沉积物中的微塑料丰度高 1-2 个数量级(80-846 颗粒 m)。统计分析表明,HFB 内的微塑料丰度明显高于 HFB 上方的区域。结果表明,当水位较低时,HFB 可以成为一个重要的微塑料汇区,而当水位较高时,该带可能成为一个潜在的污染源。聚类分析被应用于揭示不同地点采集的微塑料的特征,结果表明聚类分析可能是阐明微塑料来源和归宿的有用工具。

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