Institute of Environmental Research, Shandong University, Jinan, 250100, China.
Environ Sci Pollut Res Int. 2017 Dec;24(35):26910-26918. doi: 10.1007/s11356-015-4655-8. Epub 2015 May 20.
In order to understand the risk of heavy metals in sediments of the rivers flowing into Nansi Lake, 36 surface sediments were sampled from six rivers and seven heavy metals (Cr, Cu, Ni, Zn, As, Pb, and Cd) were determined. Potential ecological risk index (RI) of the six rivers showed significant differences: Xinxue River, Jiehe River, and Guangfu River were at medium potential risk, whereas the risk of Chengguo River was the lowest. Jiehe River, Xuesha River, and Jiangji River were meeting the medium potential risk at river mouths. Geo-accumulation index (I ) of the seven heavy metals revealed that the contamination of Cu and Cd was more serious than most other metals in the studied areas, whereas Cr in most sites of our study was not polluted. Moreover, correlation cluster analysis demonstrated that the contamination of Cu, Ni, and Zn in six rivers was mainly caused by local emissions, whereas that of As, Pb, and Cd might come from the external inputs in different forms. Consequently, the contamination of Cu and Cd and the potential risk in Xinxue River, Jiehe River, and Guangfu River as well as the local emissions should be given more attention to safeguard the water quality of Nansi Lake and the East Route Project of South to North Water Transfer.
为了了解流入南四湖河流沉积物中重金属的风险,从 6 条河流中采集了 36 个表层沉积物,并测定了 7 种重金属(Cr、Cu、Ni、Zn、As、Pb 和 Cd)。6 条河流的潜在生态风险指数(RI)存在显著差异:新薛河、解河和广府河处于中等潜在风险,而成国河的风险最低。解河、血沙河和江集河在河口处处于中等潜在风险。7 种重金属的地积累指数(I)表明,Cu 和 Cd 的污染比研究区域内大多数其他金属更为严重,而在我们研究的大多数地点,Cr 并未受到污染。此外,相关聚类分析表明,6 条河流中 Cu、Ni 和 Zn 的污染主要是由当地排放引起的,而 As、Pb 和 Cd 的污染可能以不同的形式来自外部输入。因此,应更加关注新薛河、解河和广府河的 Cu 和 Cd 污染及其潜在风险,以及当地排放物,以保障南四湖和南水北调东线工程的水质。