首页> 外文期刊>Environmental Science and Pollution Research >Geochemical fractions and risk assessment of trace elements in soils around Jiaojia gold mine in Shandong Province, China
【24h】

Geochemical fractions and risk assessment of trace elements in soils around Jiaojia gold mine in Shandong Province, China

机译:山东省焦家金矿周围土壤的地球化学组成及微量元素风险评估

获取原文
获取原文并翻译 | 示例
           

摘要

Soils located adjacent to the Jiaojia gold mine were sampled and analyzed to determine the degree of which they were contaminated by trace elements (Hg, As, Cd, Pb, Cu, and Zn) in Shandong Province, China. All 18 samples exhibited mean Hg, As, Cd, and Pb concentrations in excess of local background values, while the mean concentrations of Cu and Zn were below the background values. In addition, the concentrations of trace elements in gold smelter (GS) soils were higher than in the gold mine (GM) soils. The result from a modified Tessier sequential extraction procedure was that with the exception of Cu in soils near the smelter, the trace elements were predominantly associated with the residual fraction. After residual fraction, most Hg was mainly humic acid and strong organic fraction, while most As was the humic acid. Cd was associated with the water soluble, ion exchange, and carbonate fractions compared with the other trace elements. Furthermore, Cu, Pb, and Zn were more concentrated in the humic acid and Fe/Mn oxide fraction. The fractions of trace elements were affected by soil pH and E-c (Electrical conductivity). The humic acid fraction of Hg as well as the ion exchange fraction of Cd and Zn displayed negative correlations with soil pH. The strong organic fraction of Hg, the Fe/Mn oxide fraction of Cd, and the carbonate fraction of Zn were positively related to the soil E-c. The strong organic fraction and ion exchange fraction of Zn were negatively related to soil E-c. However, the ion exchange and carbonate fractions of As showed significant positive correlations with soil pH. A calculated individual availability factor (A (f) (i) ) is used; the values of each trace element in the soils are in the following order: Cu > Cd > Pb > Zn > As > Hg. When combined with a risk assessment code, data suggest that Hg, As, Pb, and Zn levels showed low risk for the environment, whereas Cd levels in soils adjacent to the GM and Cu levels in soils adjacent to the GS showed medium risk to the environment, and Cd levels in soils adjacent to the GS exhibited higher environment risk.
机译:对位于山东省焦家金矿附近的土壤进行了采样和分析,以确定它们被微量元素(汞,砷,镉,铅,铜,锌和锌)污染的程度。所有18个样品的Hg,As,Cd和Pb的平均浓度均超过局部背景值,而Cu和Zn的平均浓度均低于背景值。此外,金冶炼厂(GS)土壤中的微量元素浓度高于金矿(GM)土壤中的微量元素浓度。修改后的Tessier顺序萃取程序的结果是,除了冶炼厂附近土壤中的Cu以外,微量元素主要与残留分数相关。在残留馏分之后,大多数汞主要是腐殖酸和强有机物,而大多数砷是腐殖酸。与其他微量元素相比,镉与水溶性,离子交换和碳酸盐含量有关。此外,腐殖酸和Fe / Mn氧化物组分中Cu,Pb和Zn的浓度更高。微量元素的含量受土壤pH和E-c(电导率)的影响。汞的腐殖酸分数以及镉和锌的离子交换分数与土壤pH呈负相关。汞的强有机部分,镉的Fe / Mn氧化物部分和锌的碳酸盐部分与土壤E-c正相关。锌的强有机部分和离子交换部分与土壤E-c呈负相关。然而,砷的离子交换和碳酸盐含量与土壤pH值呈显着正相关。使用计算得出的个人可用性因子(A(f)(i));土壤中每种微量元素的值按以下顺序排列:Cu> Cd> Pb> Zn> As> Hg。当与风险评估代码结合使用时,数据表明Hg,As,Pb和Zn的含量对环境具有较低的风险,而与GM相邻的土壤中的Cd含量和与GS相邻的土壤中的Cu含量对中等风险。环境,与GS相邻的土壤中的Cd含量具有较高的环境风险。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号