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    栾川县钼铅锌矿区周边土壤重金属污染特征及来源解析

    Characteristics and source analysis of soil heavy metal pollution around Luanchuan molybdenum–lead–zinc mine area

    • 摘要:
      研究目的 矿产开发是土壤重金属污染的主要原因之一,严重威胁农业生产和人类健康,栾川县作为我国重要的钼铅锌矿产矿集区,系统评估该区域土壤重金属的污染状况、生态风险及成因来源,对于区域生态保护和重金属污染防控具有重要参考价值。
      研究方法 本研究基于471个土壤样点的8种重金属含量数据,采用地累积指数、内梅罗综合污染指数及潜在生态风险指数等方法,对土壤重金属污染水平及其空间分布特征进行综合评估,并结合正定矩阵因子分解(PMF)、与主成分分析(PCA)共同解析污染来源。
      研究结果 Cd、Zn、Pb和Cu是研究区主要的污染元素,其地累积指数均值分别为2.09(中度污染)、0.74(轻微污染)、0.69(轻微污染)和0.50(轻微污染)。内梅罗综合污染指数均值为0.86,反映研究区整体处于清洁至轻度污染水平。潜在生态风险指数(RI)均值为390.00,表明区域整体处于强潜在生态风险,其中Cd和Hg对风险指数的贡献率分别为66.09%和19.22%。三类指标在空间分布上具有较好一致性,污染高值区集中于矿产开采活动强烈区域,且随距离增加逐渐减弱。PMF解析结果表明,Cd和Zn主要来源于矿业活动,贡献率分别为71.60%和61.50%;Pb主要来自交通源(84.70%)和矿产源(7.80%),Cu来源于自然源(60.50%)和矿产源(29.10%);Cr和Ni则以自然成因为主,贡献率分别达到83.00%和81.40%。
      结论 Cd、Pb、Zn和Cu是矿区周边土壤重金属污染的主要元素,矿产资源开发是造成区域土壤重金属累积的核心驱动因素。

       

      Abstract:
      This paper is the result of environmental geological survey engineering.
      Objective Intensive mineral resource development is one of the primary anthropogenic drivers of heavy metal contamination in terrestrial ecosystems, posing substantial risks to agricultural sustainability and to human health. Luanchuan County, located in a key Molybdenum-Lead-Zinc metallogenic zone of China, has undergone prolonged and large-scale mining activities. This study aims to systematically assess the contamination status, ecological risk levels, and potential sources of soil heavy metals in this region, thereby providing a scientific basis for regional environmental management and pollution abatement.
      Methods A total of 471 surface soil samples were collected, and concentrations of eight heavy metals (Cd, Zn, Pb, Cu, Hg, Cr, Ni, and As) were analyzed. The extent of contamination was evaluated using the geo-accumulation index (Igeo), the Nemerow comprehensive pollution index, and the potential ecological risk index (RI). Source analysis was performed by integrating Positive Matrix Factorization (PMF) with Principal Component Analysis (PCA) to elucidate the origin and contribution of each heavy metal.
      Results Cd, Zn, Pb, and Cu were the predominant pollutants in the study area, with mean Igeo values of 2.09 (moderate pollution), 0.74, 0.69, and 0.50 (slight pollution), respectively. The average Nemerow index was 0.86, reflecting a clean to slightly polluted level for most of the region. However, the mean RI value reached 390.00, suggesting a high potential ecological risk, predominantly driven by Cd (66.09%) and Hg (19.22%). Spatial analysis indicated strong consistency among the three indices, with high-risk zones concentrated in areas of intensive mining activity, and pollution levels attenuated with increasing distance from these hotspots. PMF results identified mining activities as the primary sources of Cd (71.60%) and Zn (61.50%). Pb was primarily attributed to traffic emissions (84.70%) and mining sources (7.80%), while Cu originated from natural sources (60.50%) and mining activities (29.10%). Furthermore, Cr and Ni were mainly derived from natural geological sources, contributing 83.00% and 81.40%, respectively.
      Conclusions The primary pollution in soils surrounding the mining areas were Cd, Pb, Zn, and Cu. Mineral resource development was the core driver of heavy metal accumulation in regional soils.

       

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