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Leaching of heavy metals from lead-zinc mine tailings and the subsequent migration and transformation characteristics in paddy soil

机译:铅锌矿尾矿重金属浸出及其在水稻土中的迁移转化特征

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The leaching of heavy metals (HMs) from lead-zinc mine tailings caused by natural precipitation and the sub-sequent migration and transformation characteristics in paddy soil were investigated using simulative experi-ments. The contents of HMs in the leachate from lead-zinc mine tailings increased with the increasing of liquid-to-solid ratio. Significant differences of contents under the same rainfall were found among different HMs (P 0.01). The increasing rates of the concentrations for Mn and Zn in leachate were much higher than the other selected HMs. The leaching results of all HMs were well fitted by the DoseResp equation, indicating that the leaching processes are controlled by multiple factors. When the paddy soil was exposed to lead-zinc mine tail-ings, the HMs could accumulate significantly in the paddy soil, and their contents increased with the simulated time. The average vertical migration rates (mg kg(-1) cm(-1) d(-1)) of HMs in the paddy soil during the four months was ranked in the order of Zn (9.0x10(-2)) Mn (8.1x10(-2)) Cu (1.8x10(-2)) Pb (1.6x10(-2)) Cd (2.7x10(-4)) As (2.4x10(-4)). Compared with the other HMs, Mn and Zn can be more easily leached from lead-zinc mine tailings, then migrate into deeper layers in paddy soil. The proportions in five chemical fractions of HMs varied significantly with the impact of lead-zinc mine tailings. The Zn, Cu, and As were mainly presented in residual fraction, while Pb, Mn, and Cd were mainly presented in carbonate-bound, Fe/Mn oxides-bound, and exchangeable fractions, respectively. The risk assessment code results showed that Zn, Mn, Cu, and As posed medium risk, while Pb and Cd posed an extremely high risk to the paddy soil environment. It's found that lead-zinc mine tailings could significantly enhance the ecological risk associated with HMs in the paddy soil.
机译:采用模拟实验研究了自然降水引起的铅锌矿尾矿重金属(HMs)的浸出及其在稻田土壤中的迁移和转化特征。铅锌矿尾矿渗滤液中HMs含量随液固比的增加而增加。在相同降雨量下,不同HMs的含量差异显著(P Cu(1.8x10(-2)>Pb(1.6x10(-2))>Cd(2.7x10(-4))>As(2.4x10(-4))。与其他HMs相比,Mn和Zn更容易从铅锌矿尾矿中浸出,然后迁移到水稻土的更深层。HMs在5种化学组分中的比例随铅锌矿尾矿的影响而发生显著变化。Zn、Cu和As主要以残余部分存在,而Pb、Mn和Cd主要以碳酸盐结合、Fe/Mn氧化物结合和可交换部分存在。风险评估代码结果显示,Zn、Mn、Cu和As对稻田土壤环境构成中等风险,而Pb和Cd对水稻土环境构成极高风险。研究发现,铅锌矿尾矿可以显著增加水稻土壤中与HMs相关的生态风险。

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