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Competitive adsorption and mobility sequence of heavy metals in urban soils of southeastern China

机译:东南城市土壤中重金属的竞争性吸附和迁移顺序

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Heavy metals can be introduced into urban soils at the same time. Therefore, their selective retention and competitive adsorption by the soils become of major importance in determining their availability and movement throughout the soil In this study the availability and mobility of six heavy metals in eight urban soils collected from different cities of Zhejiang Province southeastern China were assessed using distribution coefficients (Kd) and retardation factor(Rf). The results showed that there were great differences m the Kd and Rf among the tested soils. The adsorption sequences were Cr>Pb>Cu>Cd>Zn>Ni, and the Kd decreased with increasing levels of metal addition. Ni generally has the lowest Rf values followed closely by Cd, and Zn whereas Cr and Pb reached the highest values. The results suggest that Ni and Zn have the highest mobility associated to the lowest adsorption, Cr and Pb present the opposite behavior. Correlation analysis indicates that soil pH, CaCO_3 content, and cation exchange capacity (CEC) are key factors controlling the solubility and mobility of the metals in the urban soils.
机译:重金属可以同时引入城市土壤中。因此,它们在土壤中的选择性保留和竞争性吸附对于确定其在土壤中的有效性和迁移性至关重要。在本研究中,评估了从浙江省东南部不同城市采集的八种城市土壤中六种重金属的有效性和迁移性。使用分布系数(Kd)和延迟因子(Rf)。结果表明,试验土壤之间的Kd和Rf存在很大差异。吸附顺序为Cr> Pb> Cu> Cd> Zn> Ni,随着金属添加量的增加,Kd降低。 Ni通常具有最低的Rf值,其次是Cd和Zn,而Cr和Pb达到最高值。结果表明,Ni和Zn具有最高的迁移率,而吸附程度最低,而Cr和Pb具有相反的行为。相关分析表明,土壤pH,CaCO_3含量和阳离子交换容量(CEC)是控制金属在城市土壤中的溶解度和迁移率的关键因素。

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