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首页> 外文期刊>International Journal of Environmental Science and Technology >Inorganic arsenic sorption by drinking-water treatment residual-amended sandy soil: effect of soil solution chemistry.
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Inorganic arsenic sorption by drinking-water treatment residual-amended sandy soil: effect of soil solution chemistry.

机译:饮用水处理残留改良砂质土壤对无机砷的吸附:土壤溶液化学的影响。

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Previous studies in our laboratory have demonstrated that drinking-water treatment residuals are effective sorbents of arsenic V. However, the effect of soil solution chemistry on arsenic V sorption by drinking-water treatment residuals-amended soils remains to be explored. The current study uses a batch incubation experimental set up to evaluate the effect of soil solution pH, competing ligands, and complexing metal on arsenic V sorption by a sandy soil (Immokalee series) amended with two rates (25 and 50 g kg-1) of aluminum and iron-based drinking-water treatment residuals. Experiments were conducted at three initial arsenic loads (125, 1,875, 3,750 mg kg-1) and a constant solid: solution ratio of 200 g L-1. An optimum equilibration time of 8 days, obtained from kinetic studies, was utilized for sorption experiments with both aluminum and iron drinking-water treatment residual-amended soil. Presence of phosphate decreased arsenic V sorption by both aluminum and iron drinking-water treatment residual amended soils, with a strong dependence on pH, drinking-water treatment residual types, drinking-water treatment residual application rates, and phosphate concentrations. Addition of sulfate had no effect on arsenic V sorption by aluminum or iron drinking-water treatment residual-amended soil. A complementing effect of calcium on arsenic V sorption was observed at higher pH. Results elucidating the effect of soil solution chemistry on the arsenic V sorption will be helpful in calibrating drinking-water treatment residual as a sorbent for remediation of arsenic-contaminated soils.
机译:我们实验室以前的研究表明,饮用水处理残留物是砷V的有效吸附剂。但是,土壤溶液化学对饮用水处理残留物改良土壤吸附砷V的影响仍有待探索。本研究使用分批孵化实验设置来评估土壤溶液pH,竞争性配体和络合金属对沙质土壤(Immokalee系列)对砷V的吸附的影响,修正了两种速率(25和50 g kg -1 )铝和铁基饮用水处理残渣。在三个初始砷负荷下(125、1,875、3,750 mg kg -1 )和恒定的固/液比为200 g L -1 进行实验。从动力学研究中获得的最佳平衡时间为8天,用于铝和铁饮用水处理残留改性土壤的吸附实验。磷酸盐的存在降低了铝和铁饮用水处理残留改良土壤对砷V的吸附,强烈依赖于pH值,饮用水处理残留类型,饮用水处理残留施用量和磷酸盐浓度。硫酸盐的添加对铝或铁饮用水处理残留改良土壤对砷V的吸附没有影响。在较高的pH下,观察到钙对砷V吸附的补充作用。阐明土壤溶液化学对砷V吸附的影响的结果将有助于校正饮用水处理残留物,作为吸附剂来修复受砷污染的土壤。

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