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太湖流域河网沉积物中多溴联苯醚的空间分布、来源分析及生态风险评价

Spatial distribution, source analysis, and ecological risk assessment of PBDEs in river sediment around Taihu Lake, China.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes of Ministry of Education, Hohai University, Nanjing, 210098, China.

College of Environment, Hohai University, Nanjing, 210098, China.

出版信息

Environ Monit Assess. 2020 Apr 23;192(5):309. doi: 10.1007/s10661-020-08286-2.

Abstract

The distribution and composition of organic pollutants in sediment are affected by the source and regional environment. To understand the characteristics and risk of polybrominated diphenyl ethers (PBDEs) in the area around Taihu Lake, composite sediment samples (n = 41) were collected in rivers around Taihu Lake to explore the level, spatial distribution, and source of PBDEs. The results showed that the most abundant BDE congener in river sediment was BDE209, followed by BDE99 and BDE47, with median values of 48.7, 2.17, and 1.52 ng g, respectively. Concentrations of PBDEs in sediments from northern rivers were significantly higher than those from other areas, but the overall risk was at a moderate-lower level compared with research results in other references. Results of principle component analysis (PCA) and source characteristics analysis revealed that most of PBDEs in river sediments around Taihu Lake were mixture of multiple sources, which mainly originated from atmospheric deposition, industrial wastewater, and municipal sewage. TOC showed good correlations with most PBDEs, which implied that PBDE components were influenced by sediment organic matter. Meanwhile, the risk of PBDEs in river sediments in this study area is a moderate-lower level.

摘要

湖泊周边河流沉积物中多溴二苯醚的分布、组成受来源和区域环境的影响。为了解太湖周边地区多溴二苯醚(PBDEs)的特征和风险,采集了太湖周边河流的复合沉积物样品(n=41),以探究 PBDEs 的水平、空间分布和来源。结果表明,河流沉积物中最丰富的 BDE 同系物是 BDE209,其次是 BDE99 和 BDE47,中位数分别为 48.7、2.17 和 1.52ng/g。北部河流沉积物中 PBDEs 的浓度明显高于其他地区,但与其他参考文献的研究结果相比,总体风险处于中低水平。主成分分析(PCA)和来源特征分析的结果表明,太湖周边河流沉积物中的大部分 PBDEs 是多种来源的混合物,主要来源于大气沉降、工业废水和城市污水。TOC 与大多数 PBDEs 呈良好的相关性,这表明 PBDE 成分受沉积物有机质的影响。同时,该研究区域河流沉积物中 PBDEs 的风险处于中低水平。

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