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Equilibrium, kinetic and thermodynamic studies of mercury adsorption on almond shell

机译:杏仁壳上汞吸附的平衡,动力学和热力学研究

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摘要

The application of almond shell as a low cost natural adsorbent to remove Hg 2+ from aqueous solution was investigated. Batch experiments were carried out to evaluate the adsorption capacity of the material. The chemical and physical parameters such as pH, sorbent amount, initial ion concentration, and contact time were optimized for the maximum uptake of mercury onto the solid surface. Adsorption isotherms were expressed by Langmuir and Freundlich adsorption models, and the experimental data were found to fit the Langmuir model rather than the Freundlich. The maximum adsorption capacity obtained from the Langmuir isotherm was 135.13 mg/g. A kinetic study was carried out with pseudo-first-order and pseudo-second-order reaction equations and it was found that the Hg ~(2+) uptake process followed the pseudo-second-order rate expression. The thermodynamic values, ?G ~0, ?H ~0 and ?S ~0, indicated that adsorption was an endothermic and spontaneous process. The potential of this material for mercury elimination was demonstrated by efficient Hg ~(2+) removal from a synthetic effluent.
机译:研究了杏仁壳作为低成本天然吸附剂从水溶液中去除Hg 2+的应用。进行批处理实验以评估材料的吸附能力。化学和物理参数(例如pH值,吸附剂量,初始离子浓度和接触时间)经过优化,可最大程度地吸收汞到固体表面。吸附等温线由Langmuir和Freundlich吸附模型表示,实验数据符合Langmuir模型而不是Freundlich。从Langmuir等温线获得的最大吸附容量为135.13 mg / g。用拟一阶和拟二阶反应方程进行了动力学研究,发现Hg〜(2+)的吸收过程遵循拟二阶速率表达式。热力学值ΔG〜0,ΔH〜0和ΔS〜0表明吸附是吸热和自发过程。从合成废水中有效去除Hg〜(2+)可以证明这种材料消除汞的潜力。

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