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将六价铀从水溶液中去除到由磨碎的废旧轮胎制成的活性炭上。

The removal of uranium (VI) from aqueous solutions onto activated carbon developed from grinded used tire.

机构信息

Cryprocess Team/LPDT/FGMGP/Université des Sciences et de la Technologie Houari Boumediene, BP 32 Al Alia-Bab Ezzouar, 16111, Algiers, Algeria,

出版信息

Environ Sci Pollut Res Int. 2014 Jan;21(1):684-94. doi: 10.1007/s11356-013-1940-2. Epub 2013 Jul 3.

Abstract

In this study, activated carbon was prepared from waste tire by KOH chemical activation. The pore properties including the BET surface area, pore volume, pore size distribution, and average pore diameter were characterized. BET surface area of the activated carbon was determined as 558 m(2)/g. The adsorption of uranium ions from the aqueous solution using this activated carbon has been investigated. Various physico-chemical parameters such as pH, initial metal ion concentration, and adsorbent dosage level and equilibrium contact time were studied by a batch method. The optimum pH for adsorption was found to be 3. The removal efficiency has also been determined for the adsorption system as a function of initial concentration. The experimental results were fitted to Langmuir, Freundlich, and Dubinin-Radushkevich (D-R) isotherm models. A comparison of best-fitting was performed using the coefficient of correlation and the Langmuir isotherm was found to well represent the measured sorption data. According to the evaluation using the Langmuir equation, the saturated monolayer sorption capacity of uranium ions onto waste tire activated carbon was 158.73 mg/g. The thermodynamic equilibrium constant and the Gibbs free energy were determined and results indicated the spontaneous nature of the adsorption process. Kinetics data were best described by pseudo-second-order model.

摘要

在这项研究中,通过 KOH 化学活化法从废轮胎中制备活性炭。对包括 BET 比表面积、孔体积、孔径分布和平均孔径在内的孔隙特性进行了表征。活性炭的 BET 比表面积确定为 558 m(2)/g。采用静态吸附法研究了该活性炭对水溶液中铀离子的吸附性能。通过批次法研究了各种物理化学参数,如 pH 值、初始金属离子浓度、吸附剂用量水平和平衡接触时间。发现吸附的最佳 pH 值为 3。还确定了吸附系统作为初始浓度函数的去除效率。实验结果拟合了 Langmuir、Freundlich 和 Dubinin-Radushkevich(D-R)等温线模型。通过相关系数对最佳拟合进行了比较,发现 Langmuir 等温线很好地代表了测量的吸附数据。根据 Langmuir 方程的评估,废轮胎活性炭对铀离子的饱和单层吸附容量为 158.73 mg/g。测定了热力学平衡常数和吉布斯自由能,结果表明吸附过程具有自发性。动力学数据最好用拟二级模型描述。

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