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普瑞莱特C100-MB阳离子交换树脂在固定床柱中从水相中去除铜(II):建模

Removal of copper(II) from aqueous phase by Purolite C100-MB cation exchange resin in fixed bed columns: modeling.

作者信息

Hamdaoui Oualid

机构信息

Department of Process Engineering, Faculty of Engineering, University of Annaba, P.O. Box 12, 23000 Annaba, Algeria.

出版信息

J Hazard Mater. 2009 Jan 30;161(2-3):737-46. doi: 10.1016/j.jhazmat.2008.04.016. Epub 2008 Apr 11.

Abstract

The dynamic removal of copper by Purolite C100-MB cation exchange resin was studied in packed bed columns. The values of column parameters are predicted as a function of flow rate and bed height. Batch experiments were performed using the Na-form resin to determine equilibrium and kinetics of copper removal. The uptake of Cu(II) by this resin follows first-order kinetics. The effect of stirring speed and temperature on the removal kinetics was studied. The activation energy for the exchange reaction is 13.58kJmol(-1). The equilibrium data obtained in this study have been found to fit both the Langmuir and Freundlich isotherm equations. A series of column tests were performed to determine the breakthrough curves with varying bed heights and flow rates. To predict the breakthrough curves and to determine the characteristic parameters of the column useful for process design, four kinetic models; Bohart-Adams, Bed Depth Service Time (BDST), Clark and Wolborska models are applied to experimental data. All models are found suitable for describing the whole or a definite part of the dynamic behavior of the column with respect to flow rate and bed height. The simulation of the whole breakthrough curve is effective with the Bohart-Adams and the Clark models, but the Bohart-Adams model is better. The breakthrough is best predicted by the Wolborska model. The breakthrough data gave a good fit to the BDST model, resulting in a bed exchange capacity very close to the value determined in the batch process.

摘要

在填充床柱中研究了漂莱特C100 - MB阳离子交换树脂对铜的动态去除。预测了柱参数值与流速和床层高度的函数关系。使用钠型树脂进行了间歇实验,以确定铜去除的平衡和动力学。该树脂对Cu(II)的吸附遵循一级动力学。研究了搅拌速度和温度对去除动力学的影响。交换反应的活化能为13.58kJmol(-1)。已发现本研究中获得的平衡数据符合朗缪尔和弗伦德利希等温线方程。进行了一系列柱测试,以确定不同床层高度和流速下的穿透曲线。为了预测穿透曲线并确定对工艺设计有用的柱特征参数,将四个动力学模型;博哈特 - 亚当斯模型、床层深度服务时间(BDST)模型、克拉克模型和沃尔博尔斯卡模型应用于实验数据。发现所有模型都适用于描述柱在流速和床层高度方面的整个或特定部分的动态行为。用博哈特 - 亚当斯模型和克拉克模型对整个穿透曲线的模拟是有效的,但博哈特 - 亚当斯模型更好。用沃尔博尔斯卡模型对穿透的预测最佳。穿透数据与BDST模型拟合良好,得到的床层交换容量非常接近间歇过程中确定的值。

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