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Heavy metals pollution and the identification of their sources in soil over Xiaoqinling gold-mining region, Shaanxi, China

机译:陕西小秦岭金矿区土壤重金属污染及其土壤来源的识别

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In order to determine the characteristics of heavy metals’ pollution and identify their sources in the soil over the Xiaoqinling gold-mining region, Shaanxi, China, 133 soil samples were collected over the region, one sample was from a close point as background, and concentrations of Hg, Pb, Cu, and As in all samples were analyzed. Results indicated that the soil was polluted by these heavy metals, as their concentrations in the soil over the studied region were higher than that in the background zone. In addition, the result indicated that these metals had their specific spatial characteristics. Among the samples, those with higher concentrations of Hg, Pb, and Cu were mainly collected from the Shuangqiao river alluvial terrace area, the loess ravine tableland, and the piedmont alluvial–pluvial inclined tableland, which are the areas of gold-mining activities. Meanwhile, the samples with higher concentrations of As were distributed over the loess ravine tableland around Tongguan County, where agricultural activities were conducted intensively. Furthermore, the sources for all the heavy metals Hg, Pb, Cu, and As in the soil over each landscape were determined through analyzing the concentration correlation of these metals and comparing the maps of metal concentration distribution and land-use types. In Yellow river–Weihe river alluvial plain area, these heavy metals were mainly from agricultural activities. In the other landscapes, As was also mainly from agricultural activities; the other metals were contrarily from the gold-related activities. Interestingly, the correlation coefficients of As concentrations with Hg, Pb or Cu concentrations were positive in the samples from Yellow river–Weihe river alluvial plain area, and on the contrary, they were negative in the samples from the other landscapes. This result showed that the correlation can be used as an index to indicate properly the effect of the gold-related or agricultural activities on the heavy metals in the soil and identify their main sources over each landscape. As human activities resulted in the site-specific characteristics in the concentrations and sources of the heavy metals in each landscape, site-specific control strategies should be selected intensively to remedy landscape soil pollution. In Yellow river–Weihe river plain area, effective control strategies should be aimed at remedying As pollution caused by agricultural activities; in the other landscapes, Hg, Pb and Cu pollution caused by gold-mining activities should be considered.
机译:为了确定重金属污染的特征并确定其在陕西小秦岭金矿区土壤中的来源,在该区域内收集了133个土壤样品,其中一个样品是从近处作为背景的,分析了所有样品中Hg,Pb,Cu和As的浓度。结果表明,土壤被这些重金属污染,因为研究区域内土壤中的重金属含量高于背景区域。另外,结果表明这些金属具有其特定的空间特性。在这些样品中,汞,铅和铜的含量较高,主要来自金矿活动区双桥河冲积阶地,黄土沟壑区和山前冲积—坡积斜坡区。同时,砷含量较高的样品分布在Tong关县周围的黄土沟壑区,农业活动密集。此外,通过分析这些金属的浓度相关性并比较金属浓度分布和土地利用类型图,确定了每个景观土壤中所有重金属Hg,Pb,Cu和As的来源。在黄河-渭河冲积平原区,这些重金属主要来自农业活动。在其他景观中,As也主要来自农业活动。其他金属则与黄金相关。有趣的是,黄河-渭河冲积平原区样品中As浓度与Hg,Pb或Cu的相关系数为正,相反,其他景观样品中的As为负。该结果表明,该相关性可以用作指示金相关或农业活动对土壤中重金属的影响的指标,并确定每种景观中其主要来源。由于人类活动导致每个景观中重金属的浓度和来源具有特定地点的特征,因此应集​​中选择特定地点的控制策略以补救景观土壤污染。在黄河-渭河平原地区,应采取有效的控制策略,以纠正农业活动造成的污染。在其他景观中,应考虑由金矿开采活动引起的汞,铅和铜污染。

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