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[河南省典型工业区周边农田土壤重金属污染的空间分布及风险评估]

[Spatial Distribution and Risk Assessment of Heavy Metal Pollution in Farmland Soils Surrounding a Typical Industrial Area of Henan Province].

作者信息

Meng Xiao-Fei, Guo Jun-Mei, Yang Jun-Xing, Yang Jun, Zheng Guo-di, Qiao Peng-Wei, Bian Jian-Lin, Chen Tong-Bin

机构信息

Center for Environmental Remediation, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Huan Jing Ke Xue. 2021 Feb 8;42(2):900-908. doi: 10.13227/j.hjkx.202005321.

Abstract

In order to fully explore the spatial distribution of soil heavy metal contaminants in farmland soil surrounding a typical industrial area in Dakuai town, Xinxiang city, Henan Province, the concentrations of As, Cd, Cr, Cu, Ni, Pb, and Zn in the surface soil and within the soil profile were determined and assessed. The principal components were also analyzed for source apportionment to provide a theoretical basis for the control and prevention of heavy metal pollution. According to the results, the soils in the study area are severely contaminated by Cd and Cu and moderated contaminated by As due to the battery manufacture and Cu (e.g., pipe and wire) processing. The concentrations of Cd, Cu, and As in soils were (2.56±1.23) mg·kg, (205.58±157.49) mg·kg, and (15.27±4.14) mg·kg, respectively, which exceeds standards by 100%, 89.44%, and 3.40%, respectively. Accounting for the influence of pollution sources, terrain, runoff erosion, and prevailing wind direction, all heavy metal concentrations were higher in the south direction, lower in the north direction. The concentrations of Cd and Cu in soil profile samples decreased with depth, with highest concentrations at the surface, indicating the strong effect of industrial activities. Arsenic concentrations varied little with soil depth due to its strong migration ability in alkaline soil, again suggesting an industrial source. Among them, the soil of study area was severely contaminated by Cd and Cu (Level 5). Cd poses a severe potential ecological risk (Level 5) and Cu poses a medium risk (Level 2) in the study soils, while other heavy metals show low potential ecological risk (Level 1). The order of the risk identified was Cd > Cu > Ni > As > Pb > Cr > Zn. In addition, the combined potential ecological risk of heavy metals in the target area is severe. The principal component analysis showed that the high As, Cd, and Cu contents are mainly derived from industrial areas. Therefore, it is urgent to remediate Cd and Cu soil contamination in this area and implement precautions to limit As contamination.

摘要

为全面探究河南省新乡市大块镇某典型工业区周边农田土壤中重金属污染物的空间分布情况,对表层土壤及土壤剖面中砷(As)、镉(Cd)、铬(Cr)、铜(Cu)、镍(Ni)、铅(Pb)和锌(Zn)的含量进行了测定与评估。同时分析了主成分以进行源解析,为重金属污染的防控提供理论依据。结果表明,受电池制造及铜(如管材和线材)加工影响,研究区域土壤受到镉和铜的重度污染,砷受到中度污染。土壤中镉、铜和砷的含量分别为(2.56±1.23)mg·kg、(205.58±157.49)mg·kg和(15.27±4.14)mg·kg,分别超标100%、89.44%和3.40%。综合考虑污染源、地形、径流侵蚀及主导风向的影响,所有重金属含量均呈现出南方向较高、北方向较低的特点。土壤剖面样品中镉和铜的含量随深度降低,表层含量最高,表明工业活动影响强烈。由于砷在碱性土壤中迁移能力较强,其含量随土壤深度变化不大,再次表明其来源于工业活动。其中,研究区域土壤受到镉和铜的重度污染(5级)。在研究土壤中,镉具有严重的潜在生态风险(5级),铜具有中等风险(2级),而其他重金属显示出较低的潜在生态风险(1级)。风险排序为镉>铜>镍>砷>铅>铬>锌。此外,目标区域重金属的综合潜在生态风险严重。主成分分析表明,较高的砷、镉和铜含量主要来源于工业区。因此,该区域迫切需要修复镉和铜的土壤污染,并采取预防措施限制砷污染。

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