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    福建某金矿废弃地土壤中汞在模拟酸雨环境中的释放及形态变化规律研究

    Release and speciation transformation patterns of mercury in soil from an abandoned gold mine in Fujian Province under simulated acid rain conditions

    • 摘要: 为探究酸雨环境对污染土壤中重金属汞的释放过程及其赋存形态的影响,本文以福建某金矿汞污染土壤为研究对象,采用静态释放实验和修正的Tessier法研究模拟酸雨环境中土壤汞的释放及不同形态转化规律。结果表明,土壤中汞的释放包括快速释放和慢速释放两个阶段;土壤汞的释放动力学过程可以用多个动力学方程较好的描述,其中以Elovich方程拟合效果最好,说明汞在土壤中的释放近似非均相扩散过程;在释放过程中,随着释放时间的增加,可交换离子态汞浓度逐渐增加,铁锰氧化物结合态汞浓度呈现明显的降低趋势,碳酸盐结合态汞浓度表现出一定程度的浮动性,有机物结合态汞和残渣态汞浓度缓慢降低,但是降低幅度较小。明确了汞释放的高风险窗口期与不同形态汞的环境稳定性差异。研究成果可为我国南方酸雨高发区金矿遗留汞污染场地的生态风险预警、污染调控与治理提供科学依据。

       

      Abstract: To investigate the effect of simulated acid rain on the release process and speciation of heavy metal mercury(Hg) in contaminated soil,this study used mercury-contaminated soil from an abandoned gold mine in Fujian Province as the research object.Static release experiments and the modified Tessier sequential extraction method were employed to study the release of soil mercury and its transformation among different fractions under simulated acid rain conditions.The results showed that the release of mercury from the soil consisted of two stages:a rapid release stage and a slow release stage.The release kinetics of soil mercury could be well described by multiple kinetic equations,among which the Elovich equation provided the best fit,indicating that the release process approximates a heterogeneous diffusion process.During the release process,with increasing time,the concentration of exchangeable mercury gradually increased,while the concentration of Fe-Mn oxide-bound mercury showed a significant decreasing trend.The concentration of carbonate-bound mercury exhibited a certain degree of fluctuation,and the concentrations of organic-bound mercury and residual mercury decreased slowly,though only to a small extent.The high-risk window period for mercury release and the differences in environmental stability among various mercury speciation were clarified.The research results provide a scientific basis for ecological risk early warning,pollution control,and remediation of legacy mercury-contaminated sites in gold mines in southern China,where acid rain is frequent.

       

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