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Sorption and Selectivity Sequences of Cd, Cu, Ni, Pb, and Zn in Single- and Multi-Component Systems in a Cultivated Chilean Mollisol

机译:栽培智利智利Mollisol中单组分和多组分系统中Cd,Cu,Ni,Pb和Zn的吸附和选择性序列

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The heavy-metal sorption ability of soils is one of the most important factors that determine the fate of these contaminants in this medium of the biosphere. When heavy-metal containing soil amendments are land applied, a multi-component soil-solution equilibrium may occur in which various metals compete simultaneously for the sorption sites on the soil particles. In order to determine the effect of competition among Cd, Cu, Ni, Pb, and Zn on sorption characteristics and the selectivity sequence of those heavy metals in a cultivated Mollisol of central Chile, batch sorption experiments were carried out in single- and multi-component systems. Heavy metal sorption isotherms in both types of system were well described by the Langmuir's equation. For all the metals evaluated, competition among them (multi-component system) decreased both the maximum sorption capacity, obtained from the Langmuir's isotherm, and the partition coefficient (Kd) compared to the single-component system. In addition, the simultaneous presence of the five metals promoted the sorption of Cd, and to a lesser extent of Ni, on more specific sorption sites of soil particles. Either in single- or multi-component system, Pb and Cu showed a higher selectivity and retention compared to Cd, Ni and Zn, which indicates that the later heavy metals would present a higher mobility in the soil-plant-water system. Since Langmuir's parameters and Kd were highly affected by competition for all heavy metals evaluated, the use of single-component parameters in modeling assessment might lead to an incorrect description of the transport and fate of these contaminants in receiving Mollisols.
机译:土壤对重金属的吸附能力是决定这些污染物在生物圈这种介质中去向的最重要因素之一。当在土地上施用含重金属的土壤改良剂时,可能会发生多组分的土壤溶液平衡,其中各种金属同时竞争土壤颗粒上的吸附位点。为了确定Cd,Cu,Ni,Pb和Zn之间的竞争对智利中部栽培的Mollisol吸附特性和这些重金属的选择性顺序的影响,在单重和多重吸附中进行了批量吸附实验。组件系统。 Langmuir方程很好地描述了两种类型系统中的重金属吸附等温线。对于所有评估的金属,与单组分系统相比,它们之间的竞争(多组分系统)降低了从Langmuir等温线获得的最大吸附容量,并降低了分配系数(Kd)。此外,五种金属的同时存在促进了Cd在土壤颗粒更特定的吸附位点上的吸附,而Ni的吸附程度较小。在单组分或多组分系统中,与Cd,Ni和Zn相比,Pb和Cu都具有更高的选择性和保留率,这表明后面的重金属在土壤-植物-水系统中的迁移率更高。由于Langmuir的参数和Kd受到所有评估的重金属竞争的高度影响,因此在模型评估中使用单组分参数可能会导致对这些污染物在接收Mollisols中的迁移和结局的描述不正确。

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