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漫滩土壤、无定形氢氧化铁和腐殖酸对锑(V)的吸附作用

Adsorption of antimony(V) by floodplain soils, amorphous iron(III) hydroxide and humic acid.

作者信息

Tighe Matthew, Lockwood Peter, Wilson Susan

机构信息

School of Rural Science and Agriculture, University of New England, Armidale, NSW, Australia.

出版信息

J Environ Monit. 2005 Dec;7(12):1177-85. doi: 10.1039/b508302h. Epub 2005 Oct 6.

Abstract

Antimony (Sb) emissions to the environment are increasing, and there is a dearth of knowledge regarding Sb fate and behaviour in natural systems. In particular, there is a lack of understanding of sorption of the oxidised Sb(V) species onto soils and soil phases. In this study sorption of Sb(V) by two organic rich soils with high levels of oxalate extractable Fe was examined over the pH range of 2.5-7. Furthermore, the sorption behaviour of Sb(V) was examined in two phases mimicking those dominant in the experimental soils, namely a solid humic acid and an amorphous Fe(OH)3, across the same pH range. Sorption of Sb by the soils and the humic acid fitted a Freundlich type isotherm, with the equation parameters reflecting changes in bonding affinity corresponding to pH changes. The soils sorbed >75% of the added Sb in all trials, and 80-100% at pH values less than approximately 6.5. The Fe(OH)3 retained >95% of the added Sb in all experiments. The humic acid sorbed up to 60% of the added Sb at acidic pH values, but sorption decreased to zero at higher pH values. Further adsorption studies are recommended, such as examining the effects of ion competition and changes in ionic strength.

摘要

进入环境的锑(Sb)排放量正在增加,而关于锑在自然系统中的归宿和行为的知识却很匮乏。特别是,对于氧化态的Sb(V)物种在土壤和土壤相上的吸附缺乏了解。在本研究中,考察了两种富含草酸盐可提取铁的富含有机质土壤在2.5 - 7的pH范围内对Sb(V)的吸附情况。此外,还在模拟实验土壤中占主导地位的两个相中,即在相同pH范围内,考察了Sb(V)在固体腐殖酸和无定形Fe(OH)₃中的吸附行为。土壤和腐殖酸对Sb的吸附符合Freundlich型等温线,方程参数反映了与pH变化相对应的键合亲和力变化。在所有试验中,土壤吸附了超过75%添加的Sb,在pH值小于约6.5时吸附量为80 - 100%。在所有实验中,Fe(OH)₃保留了超过95%添加的Sb。腐殖酸在酸性pH值下吸附了高达60%添加的Sb,但在较高pH值下吸附量降至零。建议进一步开展吸附研究,例如考察离子竞争和离子强度变化的影响。

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