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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Removal of zinc metal ion (Zn2+) from its aqueous solution by kaolin clay mineral: A kinetic and equilibrium study
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Removal of zinc metal ion (Zn2+) from its aqueous solution by kaolin clay mineral: A kinetic and equilibrium study

机译:高岭土矿物去除水溶液中锌金属离子(Zn2 +)的动力学和平衡研究

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摘要

A laboratory batch study has been performed to study the effect of various physic-chemical factors such as initial metal ion concentration, solution pH, and amount of adsorbent, contact time and temperature on the adsorption characteristics of zinc (Zn2+) metal ions onto kaolin. It has been found that the amount of adsorption of zinc metal ion increases with initial metal ion concentration, contact time, solution pH but decreases with the amount of adsorbent and temperature of the system. Kinetic experiments clearly indicate that adsorption of zinc metal ion (Zn2+) on kaolin is a two steps process: a very rapid adsorption of zinc metal ion to the external surface is followed by possible slow decreasing intra-particle diffusion in the interior of the adsorbent which has also been confirmed by intra-particle diffusion model. The equilibrium time is found to be in the order of 60 min. Overall the kinetic studies showed that the zinc adsorption process followed pseudo-second-order kinetics among pseudo-first-order and intra-particle diffusion model. The different kinetic parameters including rate constant are determined at different initial metal ion concentration, solution pH, amount of adsorbent and temperature respectively. The equilibrium adsorption results are analyzed by both Langmuir and Freundlich models to determine the mechanistic parameters associated with the adsorption process. The value of separation factor, R-L from Langmuir equation also gives an indication of favorable adsorption. Finally thermodynamic parameters are determined at three different temperatures and it has been found that the adsorption process is exothermic due to negative Delta H degrees accompanied by decrease in entropy change and Gibbs free energy change (Delta G degrees).
机译:已经进行了实验室分批研究,以研究各种物理化学因素(例如初始金属离子浓度,溶液pH值,吸附剂的量,接触时间和温度)对锌(Zn2 +)金属离子在高岭土上的吸附特性的影响。已经发现,锌金属离子的吸附量随初始金属离子浓度,接触时间,溶液pH而增加,但随吸附剂量和系统温度而降低。动力学实验清楚地表明,锌金属离子(Zn2 +)在高岭土上的吸附是一个两步过程:锌金属离子非常快速地吸附到外表面之后,可能缓慢地减少了颗粒在吸附剂内部的扩散,这在吸附剂内部粒子内扩散模型也证实了这一点。发现平衡时间为约60分钟。总体动力学研究表明,锌吸附过程遵循伪一级和颗粒内扩散模型中的伪二级动力学。分别在不同的初始金属离子浓度,溶液pH,吸附剂量和温度下确定包括速率常数在内的不同动力学参数。平衡吸附结果通过Langmuir模型和Freundlich模型进行分析,以确定与吸附过程相关的机械参数。 Langmuir方程的分离因子R-L值也表明吸附良好。最后,在三个不同的温度下确定了热力学参数,并且发现吸附过程是放热的,这是由于负ΔH度伴随着熵变化和吉布斯自由能变化(ΔG度)的降低。

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