The effect of humic acid on uranyl sorption onto bentonite at trace uranium levels.

Peter Ivanov, Tamara Griffiths, Nick D Bryan, Gospodin Bozhikov, Serguei Dmitriev
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引用次数: 33

Abstract

The effect of humic acid (HA) on U(VI) sorption on bentonite was studied in batch experiments at room temperature and ambient atmosphere at a (237)U(VI) concentration of 8.4 × 10(-11) M and HA concentration of 100 mg L(-1). The distribution of U(VI) between the liquid and solid phases was studied as a function of pH and ionic strength both in the absence and presence of HA. It was shown that the uranyl sorption on bentonite is strongly dependent on pH and the presence of humics, and the effect of the addition order was negligible. In the absence of HA an enhancement in the uptake with increasing pH was observed and a sharp sorption edge was found to take place between pH 3.2 and 4.2. The presence of HA slightly increases uranium(VI) sorption at low pH and curtails it at moderate pH, compared to the absence of HA. In the basic pH range for both the presence and absence of HA the sorption of uranium is significantly reduced, which could be attributed to the formation of soluble uranyl carbonate complexes. The influence of ionic strength on U(VI) and HA uptake by bentonite were investigated in the range of 0.01-1.0 M, and while there was an enhancement in the sorption of humic acid with increasing ionic strength, no significant effect of the ionic strength on the U(VI) sorption was observed in both the absence and presence of HA.

腐植酸对微量铀膨润土吸附铀酰的影响。
在常温和常压条件下,在(237)U(VI)浓度为8.4 × 10(-11) M、HA浓度为100 mg L(-1)的条件下,研究了腐植酸(HA)对膨润土吸附U(VI)的影响。研究了在不存在和不存在HA的情况下,U(VI)在液固两相间的分布随pH和离子强度的变化规律。结果表明,膨润土对铀酰的吸附主要依赖于pH值和腐殖质的存在,而添加顺序的影响可以忽略不计。在没有透明质酸的情况下,观察到随着pH值的增加,吸收增强,并且发现在pH值3.2和4.2之间发生了明显的吸收边缘。与不存在HA相比,HA的存在在低pH下略微增加铀(VI)的吸附,在中等pH下则减少。在碱性pH范围内,无论HA存在与否,铀的吸附都显著减少,这可能是由于形成了可溶的碳酸铀酰配合物。在0.01 ~ 1.0 M范围内考察了离子强度对膨润土吸附U(VI)和HA的影响,发现离子强度越大,腐殖酸的吸附能力越强,而在不存在HA和不存在HA的情况下,离子强度对U(VI)的吸附没有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Environmental Monitoring
Journal of Environmental Monitoring 环境科学-分析化学
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2.3 months
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