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Uptake of chloride ion from aqueous solution by calcined layered double hydroxides: Equilibrium and kinetic studies

机译:煅烧的层状双氢氧化物从水溶液中吸收氯离子的平衡和动力学研究

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Layered double hydroxides (LDH) calcined within a certain temperature range (denoted as CLDH) have been shown to recover their original layered structure in the presence of appropriate anions. In the light of this so-called "memory effect", uptake of chloride ion from aqueous solution by calcined MgAl-CO_3 LDH was investigated in batch mode. The equilibrium isotherm showed that the uptake of chloride ion by CLDH was consistent with the Langmuir and Freundlich equations and that the Langmuir model gave a better fit to the experimental data than the Freundlich model. The maximum uptake capacity of CLDH for chloride ion was 149.5 mg/g, close to the stoichiometric uptake (168mg/g). The influence of varying pH of solution, initial chloride concentration, adsorbent quantity, and temperature on the kinetics of chloride removal has also been explored. Four kinetic models were used to fit the experimental data, and it was found that the pseudo-second-order kinetics model could be used to describe the uptake process satisfactorily. The calculated value of E_a was found to be 56.8 kJ/mol, which suggests that the process of uptake of chloride ion is controlled by the rate of reaction of chloride ion with the CLDH rather than diffusion. A mechanism for removal of chloride ion has been confirmed by X-ray diffraction, FT-IR spectroscopy and TG-MS measurements.
机译:已证明在一定温度范围内煅烧的层状双氢氧化物(表示为CLDH)在适当的阴离子存在下可恢复其原始的层状结构。根据这种所谓的“记忆效应”,以分批方式研究了煅烧的MgAl-CO_3 LDH从水溶液中吸收氯离子的过程。平衡等温线表明,CLDH吸收氯离子与Langmuir和Freundlich方程一致,并且Langmuir模型比Freundlich模型更适合实验数据。 CLDH对氯离子的最大吸收容量为149.5 mg / g,接近化学计量吸收(168mg / g)。还研究了溶液pH值,初始氯化物浓度,吸附剂数量和温度对氯化物去除动力学的影响。使用四个动力学模型拟合实验数据,发现伪二级动力学模型可以令人满意地描述吸收过程。发现E_a的计算值为56.8kJ / mol,这表明氯离子的吸收过程由氯离子与CLDH的反应速率而不是扩散来控制。通过X射线衍射,FT-IR光谱和TG-MS测量已确认了去除氯离子的机理。

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