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Pollution Characteristics of Sb As Hg Pb Cd and Zn in Soils from Different Zones of Xikuangshan Antimony Mine

机译:锡矿山锑矿不同区域土壤中SbAsHgPbCd和Zn的污染特征

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摘要

Major sources of pollution during the antimony (Sb) mining and processing are mining waste rock, smelting waste, tailings dam, and underground tunnel wastewater. The aim of the present study was to assess magnitude of pollution from Sb mine by taking four types of samples: soil in the mining waste rock zone, soil in the smelting zone, soil in tailings zone, and soil in underground tunnel wastewater zone. Sixty soil samples from the four zones were taken for experimental work, and the contents and morphological characteristics of the six potentially toxic elements (PTEs) such as Sb, As, Hg, Pb, Cd, and Zn in the soil samples were measured by using a hydride generation atomic fluorescence spectrometer (AFS-9700). The results show that the soil of the mine area is seriously polluted. The average contents of Sb, As, Hg, Pb, Cd, and Zn in the soil reach 1267.20 mg·kg−1, 94.44 mg·kg−1, 1.46 mg·kg−1, 184.19 mg·kg−1, 8.54 mg·kg−1, and 1054.11 mg·kg−1, respectively. There exists good correlation between the PTEs in the soil, with Sb strongly positively correlated with As, Hg, Pb, and Zn. The intensity of pollution is highest in the antimony-smelting zone, where the potential ecological risk index is over 15,000, followed by the tailings zone and mining waste rock zone, with the underground tunnel wastewater zone being the lowest. Using sequential chemical extraction, the elements are associated with the residual fraction, followed by organic-sulfide fraction, and smaller portions in the Fe-Mn oxide, carbonate, and exchangeable fractions. There are great differences in the speciation content of different elements in different sampling zones. The study implicates that Sb-smelting zone is the potential source of PTEs and maximum metals are associated with residual phase, out of which significant portion is associated with mobile fraction or phase.
机译:锑(Sb)开采和加工过程中的主要污染源是采矿waste石,冶炼废料,尾矿坝和地下隧道废水。本研究的目的是通过以下四种类型的样品来评估Sb矿山的污染程度:采矿waste石区中的土壤,冶炼区中的土壤,尾矿区中的土壤和地下隧道废水区中的土壤。抽取了四个区域的60个土壤样品进行实验工作,并通过使用HPLC测定了土壤样品中Sb,As,Hg,Pb,Cd和Zn等六个潜在有毒元素(PTE)的含量和形态特征。氢化物发生原子荧光光谱仪(AFS-9700)。结果表明,该矿区土壤受到严重污染。土壤中Sb,As,Hg,Pb,Cd和Zn的平均含量分别为1267.20 mg·kg -1 ,94.44 mg·kg -1 ,1.46 mg ·kg −1 ,184.19 mg·kg -1 ,8.54 mg·kg -1 和1054.11 mg·kg -1 。土壤中的PTE之间存在良好的相关性,而Sb与As,Hg,Pb和Zn呈正相关。锑冶炼区的污染强度最高,其潜在的生态风险指数超过15,000,其次是尾矿区和采矿waste石区,地下隧道废水区最低。使用顺序化学萃取,将元素与残留部分,有机硫化物部分以及Fe-Mn氧化物,碳酸盐和可交换部分中的较小部分相关联。不同采样区不同元素的形态含量差异很大。研究表明,Sb熔炼区是PTE的潜在来源,而最大的金属与残留相有关,其中大部分与流动的馏分或相有关。

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