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利用天然土耳其斜发沸石从水溶液中去除铵离子。

Removal of ammonium ion from aqueous solution using natural Turkish clinoptilolite.

作者信息

Karadag Doğan, Koc Yunus, Turan Mustafa, Armagan Bulent

机构信息

Yildiz Technical University, Civil Engineering Faculty, Environmental Engineering Department, 34349 Besiktas, Istanbul, Turkey.

出版信息

J Hazard Mater. 2006 Aug 25;136(3):604-9. doi: 10.1016/j.jhazmat.2005.12.042. Epub 2006 Jan 25.

Abstract

A study on ion exchange kinetics and equilibrium isotherms of ammonium ion on natural Turkish clinoptilolite (zeolite) was conducted using a batch experiment technique. The effects of relevant parameters, such as temperature, contact time and initial ammonium (NH(4)(+)) concentration were examined, respectively. The pseudo first-order, pseudo second-order kinetic models and intraparticle diffusion model were used to describe the kinetic data. The pseudo second-order kinetic model provided excellent kinetic data fitting (R(2)>0.990) and intraparticle diffusion effects ammonium uptake. The Langmuir and Freundlich models were applied to describe the equilibrium isotherms for ammonium uptake and the Langmuir model agrees very well with experimental data. Thermodynamic parameters such as change in free energy (DeltaG(0)), enthalpy (DeltaH(0)) and entropy (DeltaS(0)) were also determined. An examination of the thermodynamic parameters shows that the exchange of ammonium ion by clinoptilolite is a process occurring spontaneously and physical in nature at ambient conditions (25 degrees C). The process is also found to be exothermic. The results indicate that there is a significant potential for the natural Turkish clinoptilolite as an adsorbent material for ammonium removal from aqueous solutions.

摘要

采用间歇实验技术对天然土耳其斜发沸石(沸石)上铵离子的离子交换动力学和平衡等温线进行了研究。分别考察了温度、接触时间和初始铵(NH₄⁺)浓度等相关参数的影响。采用伪一级、伪二级动力学模型和颗粒内扩散模型来描述动力学数据。伪二级动力学模型提供了出色的动力学数据拟合(R²>0.990),且颗粒内扩散影响铵的吸收。应用朗缪尔模型和弗伦德利希模型来描述铵吸收的平衡等温线,朗缪尔模型与实验数据吻合得很好。还测定了自由能变化(ΔG⁰)、焓(ΔH⁰)和熵(ΔS⁰)等热力学参数。对热力学参数的考察表明,在环境条件(25℃)下,斜发沸石对铵离子的交换是一个自然发生的自发物理过程。该过程也是放热的。结果表明,天然土耳其斜发沸石作为从水溶液中去除铵的吸附材料具有巨大潜力。

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