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Contribution of Amorphous Iron Compounds to Adsorptions of Pentavalent Antimony by Soils

机译:非晶态铁化合物对土壤吸附五价锑的贡献

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摘要

Antimony, a known toxic element, is emitted into the environment by industrial processes. The objective of this research was to identify the components adsorbing antimony(V) in soils. Antimony(V) uptake by soil samples and synthesized allophane was measured by the spiking method. The phosphorous sorption coefficient of soil samples was measured and the amorphous index calculated. The antimony(V) adsorptive capacity of various soils, calculated from the uptake, indicated that Andosol soils rich in amorphous components have a high capacity of adsorption. A strong relationship was observed between the amorphous index and antimony(V) adsorptive capacity and also between the Fe/(Al + Fe) ratio and antimony(V) adsorptive capacity of synthesized allophane, thus indicating that the contribution of iron-related surface base groups is higher than the aluminol and silanol groups. Evidence supporting this result was obtained from an extraction experiment in which 34-92% of antimony(V) adsorbed by soil samples was bound to amorphous iron compounds. This research indicates that the adsorption of antimony(V) is closer tornthat of arsenic(III) than arsenic(V), which is of interest in considering the mobility of antimony in the environment.
机译:锑是一种已知的有毒元素,通过工业过程排放到环境中。这项研究的目的是确定土壤中吸附锑(V)的成分。通过加标法测量土壤样品和合成的脲烷的锑(V)吸收。测量土壤样品的磷吸附系数,并计算无定形指数。通过吸收计算出的各种土壤对锑的吸附能力表明,富含无定形成分的Andosol土壤具有很高的吸附能力。观察到无定形指数与锑(V)吸附能力之间的密切关系,以及合成的Allophane的Fe /(Al + Fe)比与锑(V)吸附能力之间的密切关系,从而表明铁相关表面碱的贡献基高于铝醇和硅烷醇基。从提取实验中获得支持该结果的证据,在提取实验中,土壤样品吸附的34-92%的锑(V)与无定形铁化合物结合。这项研究表明,锑(V)的吸附比砷(V)更接近砷(III),这对考虑锑在环境中的迁移性很有意义。

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