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Ecological and human health risk assessments in the context of soil heavy metal pollution in a typical industrial area of Shanghai, China

机译:中国上海典型工业区土壤重金属污染背景下的生态和人体健康风险评估

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The purpose of this study was to identify the concentrations, sources, and potential ecological and health risks of heavy metals in soils from a typical industrial area in Shanghai, China. A total of 28 surface soil samples were collected and analyzed for As, Cd, Cr, Cu, Pb, Ni, Zn, and Hg from the BAO steel industry in June and July 2016. Classic multivariate statistical and geostatistical analysis methods were used to detect the sources of heavy metals, and the ecological risk index (RI) and hazard index (HI) were calculated to assess the potential ecological and health risks. The results showed significant pollution levels, which were derived from the industrial production process and closely related to the spatial layout of the functional areas of the industry. The ecological risk assessment indicated that a very high concentration zone with values ranging from 2045 to 3417?mg?kg_(?1)represented considerable ecological risk in the range of 300 to 600. The main dominant factor affecting the ecological risk is toxicity rather than concentration. The health risk assessment indicated that noncarcinogenic risk was mainly caused by Cr, and the average HI value for adults was 6.48, while it was 39.01 for children. Thus, children face higher threats to heavy metals in soils. The average carcinogenic risk values for Ni, Cr, Cd, and As were 7.97E-09, 5.2E-07, 2.1E-10, and 2.1E-09, respectively, all of which were below the threshold values (1.0E???04). These results provide basic information for the control and environmental management of heavy metal pollution in steel industrial regions.
机译:本研究的目的是识别中国上海典型工业区的土壤中重金属的浓度,来源和潜在的生态和健康风险。收集了总共28种表面土壤样品,并于2016年6月和7月与宝钢工业中的CD,Cr,Cu,Pb,Ni,Zn和Hg分析。经典多元统计和地质统计分析方法用于检测计算重金属来源,以及生态风险指数(RI)和危险指数(HI),以评估潜在的生态和健康风险。结果显示出显着的污染水平,这些污染水平来自工业生产过程,与行业功能区域的空间布局密切相关。生态风险评估表明,一个非常高的浓度区,值从2045到3417?mg?kg _(?1)在300至600的范围内表示相当大的生态风险。影响生态风险的主要主导因素是毒性而非专注。健康风险评估表明,非易生性风险主要是由CR引起的,而成人的平均价值为6.48,而儿童为39.01。因此,儿童对土壤中的重金属面临更高的威胁。 Ni,Cr,Cd的平均致癌风险值,分别为7.97e-09,5.2e-07,2.1e-10和2.1e-09,所有这些都在阈值(1.0e? ?? 04)。这些结果为钢铁工业区重金属污染的控制和环境管理提供了基本信息。

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