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Ecological and human health risks associated with abandoned gold mine tailings contaminated soil

机译:与废弃的金矿尾矿污染土壤相关的生态和人类健康风险

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摘要

Gold mining is a major source of metal and metalloid emissions into the environment. Studies were carried out in Krugersdorp, South Africa, to evaluate the ecological and human health risks associated with exposure to metals and metalloids in mine tailings contaminated soils. Concentrations of arsenic (As), cadmium (Cd), chromium (Cr), cobalt (Co), copper (Cu), lead (Pb), manganese (Mn), nickel (Ni), and zinc (Zn) in soil samples from the area varied with the highest contamination factors (expressed as ratio of metal or metalloid concentration in the tailings contaminated soil to that of the control site) observed for As (3.5x102), Co (2.8x102) and Ni (1.1x102). Potential ecological risk index values for metals and metalloids determined from soil metal and metalloid concentrations and their respective risk factors were correspondingly highest for As (3.5x103) and Co (1.4x103), whereas Mn (0.6) presented the lowest ecological risk. Human health risk was assessed using Hazard Quotient (HQ), Chronic Hazard Index (CHI) and carcinogenic risk levels, where values of HQ > 1, CHI > 1 and carcinogenic risk values > 1×10−4 represent elevated risks. Values for HQ indicated high exposure-related risk for As (53.7), Cr (14.8), Ni (2.2), Zn (2.64) and Mn (1.67). Children were more at risk from heavy metal and metalloid exposure than adults. Cancer-related risks associated with metal and metalloid exposure among children were also higher than in adults with cancer risk values of 3×10−2 and 4×10−2 for As and Ni respectively among children, and 5×10−3 and 4×10−3 for As and Ni respectively among adults. There is significant potential ecological and human health risk associated with metal and metalloid exposure from contaminated soils around gold mine tailings dumps. This could be a potential contributing factor to a setback in the health of residents in informal settlements dominating this mining area as the immune systems of some of these residents are already compromised by high HIV prevalence.
机译:金矿开采是环境中金属和准金属排放的主要来源。在南非的克鲁格斯多普进行了研究,以评估与矿山尾矿污染土壤中的金属和准金属接触有关的生态和人类健康风险。土壤样品中砷(As),镉(Cd),铬(Cr),钴(Co),铜(Cu),铅(Pb),锰(Mn),镍(Ni)和锌(Zn)的浓度砷(3.5x10 2 ),钴(2.8x10)的污染系数最高的区域(表示为尾矿污染土壤中金属或准金属浓度与对照地点的污染物之比) 2 )和Ni(1.1x10 2 )。从土壤金属和准金属浓度及其各自的风险因素确定的金属和准金属的潜在生态风险指数值分别以As(3.5x10 3 )和Co(1.4x10 3 ),而锰(0.6)的生态风险最低。使用危险商(HQ),慢性危险指数(CHI)和致癌风险水平评估人类健康风险,其中HQ> 1,CHI> 1和致癌风险值> 1×10 −4 代表高风险。 HQ值表明高暴露相关风险的As(53.7),Cr(14.8),Ni(2.2),Zn(2.64)和Mn(1.67)。与成年人相比,儿童受重金属和类金属的危害更大。儿童中与金属和类金属接触有关的癌症相关风险也高于成人,其中As的癌症风险值为3×10 -2 和4×10 -2 儿童中的Ni和Ni,成人中的As和Ni分别为5×10 -3 和4×10 -3 。与金矿尾矿堆附近的污染土壤中的金属和准金属接触相关的潜在的生态和人类健康风险。这可能是导致在该矿区占主导地位的非正式居住区居民健康遭受挫折的潜在因素,因为其中一些居民的免疫系统已经受到艾滋病毒高发率的损害。

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