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再开发利用工业场地土壤重金属含量分布及生态风险
引用本文:沈城,刘馥雯,吴健,黄沈发,王敏,黄波涛.再开发利用工业场地土壤重金属含量分布及生态风险[J].环境科学,2020,41(11):5125-5132.
作者姓名:沈城  刘馥雯  吴健  黄沈发  王敏  黄波涛
作者单位:上海市环境科学研究院,上海200233,华东理工大学资源与环境工程学院,国家环境保护化工过程环境风险评价与控制重点实验室,上海200237,上海市环境科学研究院,上海200233,上海市环境科学研究院,上海200233,上海市环境科学研究院,上海200233,上海市环境科学研究院,上海200233
基金项目:上海市生态环境局重大科研项目(沪环科[2018]第3号,沪环科[2019]第22号);上海市科学技术委员会重大项目(17DZ1202200)
摘    要:选取上海市普陀、宝山、闵行和嘉定这4个区内50块典型场地,测定1847个不同垂直剖面深度土壤样品中重金属Hg、Cd、Pb、Cr和As含量,并通过内梅罗综合指数法和潜在生态风险指数法进行评价.从总体上看,Hg、Cd、Pb、Cr和As在表层土壤样品中的平均含量分别为0.33、0.37、74.55、69.23和9.05 mg ·kg-1,其中Hg、Cd和Pb均超过上海市土壤背景值,分别是背景值的2.75、2.85和2.93倍;5种重金属含量随着土壤垂直剖面深度的增加逐渐降低,深层和饱和带土壤重金属含量接近或低于背景值水平,这表明人类活动扰动影响主要局限于表层.普陀区表层土壤中Hg、Cd和Pb的累积程度最为明显,平均含量是背景值的4.25、4.85和3.09倍;宝山区的Hg和Pb平均含量则为背景值的4.92和6.43倍.宝山区和普陀区的内梅罗综合指数分别为3.70和3.20,属重污染等级;普陀区潜在生态风险指数最高为398.59,具有很强风险,宝山潜在生态风险指数为303.08,具较强风险.闵行和嘉定土壤重金属含量和生态风险水平相对较低.综上,再开发利用工业场地土壤重金属污染受企业生产年限、行业类型及历史管理水平等因素的综合影响,工业发展较早的普陀和宝山土壤重金属累积程度明显高于闵行和嘉定.工业场地土壤中重金属Hg、Cd和Pb的污染值得关注.

关 键 词:再开发利用工业场地  土壤  重金属  内梅罗综合指数  潜在生态风险指数
收稿时间:2020/3/26 0:00:00
修稿时间:2020/5/13 0:00:00

Distribution and Ecological Risk of Heavy Metals in the Soil of Redevelopment Industrial Sites
SHEN Cheng,LIU Fu-wen,WU Jian,HUANG Shen-f,WANG Min,HUANG Bo-tao.Distribution and Ecological Risk of Heavy Metals in the Soil of Redevelopment Industrial Sites[J].Chinese Journal of Environmental Science,2020,41(11):5125-5132.
Authors:SHEN Cheng  LIU Fu-wen  WU Jian  HUANG Shen-f  WANG Min  HUANG Bo-tao
Institution:Shanghai Academy of Environmental Sciences, Shanghai 200233, China;State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, School of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, China
Abstract:Fifty typical redevelopment industrial sites in the Putuo, Baoshan, Minhang, and Jiangding districts of Shanghai were chosen to evaluate the ecological risk of heavy metals in the soil. The contents of heavy metal (Hg, Cd, Pb, Cr, and As) in 1847 soil samples, taken from vertical sections, were determined, and their risks were evaluated using the Nemero composite index and Hakanson potential ecological risk index. The average contents of Hg, Cd, Pb, Cr, and As in topsoil samples were 0.33, 0.37, 74.55, 69.23, and 9.05 mg·kg-1, respectively. The contents of Hg, Cd, and Pb exceeded the soil background values of Shanghai, which were 2.75, 2.85, and 2.93 times the background values, respectively. The contents of five heavy metals in soil decreased gradually with increased depth. The contents of heavy metals in deep and saturated soils were close to, or below, the background values, indicating that the anthropic activity disturbance was mainly confined to the topsoil. The accumulation of Hg, Cd, and Pb was the most obvious in Putuo topsoil, with the average contents being 4.25, 4.85, and 3.09 times the background values, respectively. The average contents of Hg and Pb in Baoshan were 4.92 and 6.43 times the background values, respectively. The Nemero Composite Index of Baoshan and Putuo districts were 3.70 and 3.20, respectively, representing heavy pollution level at these sites. The Hakanson potential ecological risk indexes of the Putuo and Baoshang districts were 398.59 and 303.08, respectively, with considerable ecological risk levels. The content and ecological risk of heavy metals at the Minhang and Jiading sites were relatively low. In summary, the pollution of heavy metal in the redeveloped industrial sites is influenced by the operating time, industry type, and past management level of the enterprises. The heavy metal accumulation in the Putuo and Baoshan districts, whose industries developed earlier, were higher than those in the Minhang and Jiading districts. The pollution of heavy metal Hg, Cd, and Pb in soil should be a focus of future work.
Keywords:redevelopment industrial sites  soil  heavy metals  Nemero composite index  potential ecological risk index
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