首页> 外文期刊>International Journal of Environmental Research and Public Health >Geochemical Background and Baseline Values Determination and Spatial Distribution of Heavy Metal Pollution in Soils of the Andes Mountain Range (Cajamarca-Huancavelica, Peru)
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Geochemical Background and Baseline Values Determination and Spatial Distribution of Heavy Metal Pollution in Soils of the Andes Mountain Range (Cajamarca-Huancavelica, Peru)

机译:安第斯山脉土壤的重金属污染的地球化学背景和基线值确定及空间分布(秘鲁卡哈马卡-万卡维利卡)

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Concentrations of seven heavy metals (Cd, Cr, Cu, Hg, Ni, Pb, and Zn) and one metalloid (As) as well as various parameters (pH, organic carbon, granulometric analysis and cation exchange capacity) were analyzed in 77 soil samples collected in the mining areas of La Zanja and Colquirrumi (Department of Cajamarca) and Julcani (Department of Huancavelica). Our study proposed geochemical baseline values for heavy metals in a natural region (La Zanja) from samples collected during the period of the environmental impact study (2006), that is, from an earlier period which occurred at the beginning of the exploitation of the current gold mine. The baseline values obtained were as follows: 8.26 mg kg?1 for Cr; 56.97 mg kg?1 for Ni; 22, 20 mg kg?1 for the Cu; 47.42 mg kg?1 for Zn; 27.50 mg kg?1 for As; 4.36 mg kg?1 for Cd; 4.89 mg kg?1 for Hg, and 44.87 mg kg?1 for Pb. Through the use of different indices of heavy metal contamination (geo-accumulation index (Igeo), improved Nemerow index (IIN) and potential ecological risk index (RI)), the degree of pollution caused by mining activities in two areas, Colquirrumi and Julcani, which have a high density of mining sites in operation, was determined. The values obtained from these indices indicated that the Colquirrumi region was the most contaminated, followed by Julcani. The area of La Zanja, despite being free of mining operations, presented slight diffuse pollution. Several positive correlations were obtained, with a high level of significance, between pH, organic carbon content, cation exchange capacity, and the Cr, Pb and Ni concentrations of the soils. The spatial distribution of the heavy metals was realized by means of the interpolation method of ordinary kriging. The results obtained and the experience gained in this work were necessary to facilitate the identification of soil contamination processes in high altitude areas of the Andes Western Cordillera (Peru) as a basis for taking appropriate measures when restoring soils, during mine closure processes, and to protect the quality of soil resources.
机译:在77个土壤中分析了7种重金属(Cd,Cr,Cu,Hg,Ni,Pb和Zn)和一种准金属(As)的浓度以及各种参数(pH,有机碳,粒度分析和阳离子交换容量)在La Zanja和Colquirrumi(卡哈马卡省)和Julcani(Huncavelica部)的采矿区采集的样品。我们的研究提出了自然环境(La Zanja)中重金属的地球化学基准值,该值是从环境影响研究期间(2006年)收集的样本中得出的,也就是说,是从当前开采初期开始的较早时期收集的金矿。获得的基线值如下:Cr 8.26 mg kg?1; Ni为56.97 mg kg?1; 22,铜20 mg kg?1;锌47.42 mg kg?1;砷27.50 mg kg?1镉为4.36 mg kg?1;汞为4.89 mg kg?1,铅为44.87 mg kg?1。通过使用不同的重金属污染指数(地质累积指数(Igeo),改良的尼梅洛指数(IIN)和潜在生态风险指数(RI)),确定了两个地区(科尔基鲁米和朱卡尼)采矿活动造成的污染程度已确定开采中的采矿场密度高。从这些指数获得的值表明,受污染最严重的是科尔基鲁米地区,其次是朱卡尼。 La Zanja地区尽管没有进行采矿作业,但散布着轻微的污染。在pH,有机碳含量,阳离子交换能力以及土壤中的Cr,Pb和Ni浓度之间获得了一些正相关性,具有高度的意义。重金属的空间分布是通过普通克里金插值法实现的。在这项工作中获得的结果和经验对于促进识别安第斯山脉西部山脉(秘鲁)高海拔地区的土壤污染过程是必要的,以此作为在土壤修复,矿山关闭过程中采取适当措施以及保护土壤资源的质量。

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