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热酸处理海泡石对水溶液中铀的吸附

Adsorption of uranium from aqueous solution on heat and acid treated sepiolites.

作者信息

Kilislioglu Ayben, Aras Gozde

机构信息

Istanbul University, Department of Chemistry, Avcilar, 34320 Istanbul, Turkey.

出版信息

Appl Radiat Isot. 2010 Oct;68(10):2016-9. doi: 10.1016/j.apradiso.2010.04.021. Epub 2010 Apr 24.

Abstract

In this work adsorption of uranium on natural, heat and acid treated sepiolite was studied. For acid treatment HCl and H(2)SO(4) were used separately. Heat and acid treatment caused some changes in sepiolite such as surface area, micropore volume (cm(3)/g) and average pore diameter (A). Different amounts of Mg ions were extracted from the lattice depending on the type of acid. After acid treatment with HCl, the amount of Mg left in the sepiolite changed a little. During H(2)SO(4) treatment the sepiolite structure was progressively transformed into amorphous silica. These heat and acid treatments changed adsorption capacity and mechanism of uranium on sepiolite. Data obtained from the adsorption experiments were applied to Langmuir and Dubinin-Radushkevich (D-R) adsorption isotherms. Using these isotherms different adsorption capacities were found for natural and treated sepiolite samples. The capacity values were 3.58x10(-3), 3.14x10(-3), 2.78x10(-3) and 1.55x10(-3)mol/g for HCl treated, heat treated, natural and H(2)SO(4) treated sepiolite samples, respectively. In order to evaluate the adsorption mechanism adsorption energies were calculated by the D-R isotherm. According to the adsorption energy values uranium fixed to the natural and heat treated sepiolite surface with ion exchange (12.75 and 12.12 kJ/mol, respectively). Simple physical attractions were the driving force for adsorption on HCl and H(2)SO(4) treated ones (6.62 and 6.87 kJ/mol, respectively).

摘要

在这项工作中,研究了天然、经加热和酸处理的海泡石对铀的吸附情况。酸处理分别使用了盐酸和硫酸。加热和酸处理使海泡石发生了一些变化,如表面积、微孔体积(立方厘米/克)和平均孔径(埃)。根据酸的类型,从晶格中提取出了不同数量的镁离子。用盐酸进行酸处理后,海泡石中剩余的镁含量变化不大。在硫酸处理过程中,海泡石结构逐渐转变为无定形二氧化硅。这些加热和酸处理改变了海泡石对铀的吸附容量和吸附机制。将吸附实验获得的数据应用于朗缪尔和杜比宁-拉杜舍维奇(D-R)吸附等温线。利用这些等温线,发现天然和处理后的海泡石样品具有不同的吸附容量。盐酸处理、加热处理、天然和硫酸处理的海泡石样品的容量值分别为3.58×10⁻³、3.14×10⁻³、2.78×10⁻³和1.55×10⁻³摩尔/克。为了评估吸附机制,通过D-R等温线计算了吸附能。根据吸附能值,铀通过离子交换固定在天然和加热处理的海泡石表面(分别为12.75和12.12千焦/摩尔)。简单的物理吸引力是铀吸附在盐酸和硫酸处理的海泡石上的驱动力(分别为6.62和6.87千焦/摩尔)。

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