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电解锰渣库周边土壤重金属污染特征评价

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中国作为全世界最大的电解锰生产国,电解锰渣堆存造成的土壤污染亟需改善.该研究在中国锰矿资源储量最大的基地——贵州省铜仁市,选取辖区公共电解锰渣库(玉屏侗族自治县蔡溪村),利用湿式消解法及改进的BCR三步提取法对Mn、Zn、Pb、Ni、Cr、Cd6种重金属元素在电解锰渣库周边土壤中的污染特征、形态分布及风险评价进行分析讨论.Mn、Pb和Cd是对渣库周边土壤环境质量影响最大的重金属.Mn含量变化范围为356~14 915 mg/kg,平均值为3 828mg/kg,超过贵州土壤背景值4.8倍.Pb和Cd的平均含量是农用地土壤国家标准风险筛选值的3.1和40.2倍.6种重金属均以可迁移的酸溶解态为主.Mn和Cd的弱酸提取态含量随距渣库坝体越近而显著增加(P<0.05).普通Kriging空间插值结果发现Mn、Cd、Zn、Pb和Ni 5种重金属含量具有中等强度的空间相关性,其中Mn和Cd含量受到人为活动污染等随机影响较大.Mn和Cd空间分布总体呈东高西低,高值均出现在电解锰渣库坝体附近.主成分分析法显示Mn、Cd和Pb主要受电解锰渣库污染影响;Ni和Zn主要来源于附近农业活动和工业生产;Cr主要受地质背景因素影响.电解锰渣库周边土壤潜在生态风险指数为最高风险等级,其中Cd的贡献比例最大(91%).
Heavy Metal Pollution of Soils Around an Electrolytic Manganese Waste Residue Storage:Characteristics and Evaluation
China as a biggest producer of electrolytic manganese is in the imperative to ameliorate the soil pollution which caused by electrolytic manganese waste residue.In this study,a survey was undertaken at a electrolytic manganese residue storage in Caixi Village of the Yuping Dong-minority Autonomous County under the jurisdiction of Tongren City of Guizhou Province,where the largest reserve of manganese ore resources in China is situated.To understand the characteristics of soil pollution,the speciation distribution of heavy metals(incl.Mn,Zn,Pb,Ni,Cr and Cd),and ecological risk of heavy metal contamination of the soil around the electrolytic manganese residue storage were analyzed by wet digestion and BCR sequen-tial extraction.Mn,Pb and Cd,inter alia,had caused the severest impacts on the environmental quality of soil:Mn concentra-tion was in the range of 356~14 915 mg/kg,with an average of 3 828 mg/kg,being 4.8 times higher than the background value of the soil in Guizhou;and the average concentrations of Pb and Cd were 3.1 and 40.2 times,respectively,higher than the"risk screening values of the National Standard for Farmland Soil".As to the heavy metal speciation,six species of heavy-metal were mainly composed of migratory dissolved weak acid,and the content of dissolved fraction of weak acid of Mn and Cd in soil increased as the distance got closer towards the residue storage dam(P<0.05).According to the analytic result by us-ing the common Kriging spatial interpolation,there existed a kind of moderate spatial correlation among the content of Mn,Cd,Zn,Pb and Ni;in addition,the content of Mn and Cd,among others,were randomly affected by the pollution of human activity considerably;and the spatial distribution of concentrations of Mn and Cd in general showed the higher in the east and lower in the west parts of the area being investigated,and the high values of Mn and Cd concentrations were found mostly near the dam of the waste residue storage;and the results of principal component analysis(PCA)indicated that Mn,Cd and Pb were mainly resulted from the pollution of electrolytic manganese residue,while the contamination sources of Ni and Zn could be traced to the nearby agricultural activities and industrial production.Furthermore,Cr was mainly affected by the geological background factors,the highest potential ecological risk level belonged to the soils in proximity to the waste residue storage,and particularly,the contribution ratio of Cd was the highest(91%).

electrolytic manganese residueheavy metal contamination of soilspeciation distributionsource apportion-mentrisk assessment

付晓辛、肖雪、谭道永、徐中慧、于文彬

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西南科技大学,固体废物处理与资源化教育部重点实验室,四川 绵阳 621010

中国科学院地球化学研究所,矿床地球化学国家重点实验室,贵州 贵阳 550081

电解锰渣 土壤重金属污染 形态分布 源解析 生态风险

国家重点研发计划子课题

2018YFC1903501

2024

环境科学与技术
湖北省环境科学研究院

环境科学与技术

CSTPCD北大核心
影响因子:0.943
ISSN:1003-6504
年,卷(期):2024.47(3)
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