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利用铁蒙脱石通过吸附作用从水溶液中去除镉离子。

Removal of Cd2+ from aqueous solution by adsorption using Fe-montmorillonite.

作者信息

Wu Pingxiao, Wu Weimin, Li Shuzhen, Xing Ning, Zhu Nengwu, Li Ping, Wu Jinghua, Yang Chen, Dang Zhi

机构信息

College of Environmental Science and Engineering, South China University of Technology, Guangzhou 510640, PR China.

出版信息

J Hazard Mater. 2009 Sep 30;169(1-3):824-30. doi: 10.1016/j.jhazmat.2009.04.022. Epub 2009 Apr 14.

Abstract

Fe-montmorillonite (Fe-Mont.) is obtained by exchanging the original interlayer cations of montmorillonite by poly-hydroxyl ferric. In this paper, Fe-Mont. was synthesized by using Ca-montmorillonite (Ca-Mont.) directly under ultrasonic treatment with the aim to enhance the ability of removal of heavy metal ions from wastewater. The modified materials were characterized by X-ray diffraction (XRD) and Fourier transform infrared (FT-IR). Batch equilibrium experiments of Cd(II) ions (Cd(2+)) adsorption on the Fe-Mont. were performed. Effects of the initial pH of the solution and contact time on the adsorption of Cd(2+) were studied. Four types of adsorption isotherms were applied to describe the adsorption isotherms of Cd(2+) by Fe-Mont. The relationship between adsorbing capacity (q(e)) and equilibrium mass concentration (C(e)) is in accordance with the isothermal adsorption equation of Langmuir. Three kinetic models, including pseudo-first-order, pseudo-second-order and the Elovich equation model, were used to analyze the Cd(2+) adsorption process. The pseudo-second-order chemical reaction kinetics provide the best correlation of the experimental data, therefore the adsorption dynamics follows the laws of pseudo-second-order kinetics.

摘要

铁蒙脱石(Fe-Mont.)是通过用多羟基铁交换蒙脱石的原始层间阳离子而获得的。在本文中,直接以钙蒙脱石(Ca-Mont.)为原料,在超声处理下合成了铁蒙脱石,旨在提高其从废水中去除重金属离子的能力。采用X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR)对改性材料进行了表征。进行了Cd(II)离子(Cd(2+))在铁蒙脱石上的吸附批次平衡实验。研究了溶液初始pH值和接触时间对Cd(2+)吸附的影响。应用四种类型的吸附等温线来描述铁蒙脱石对Cd(2+)的吸附等温线。吸附容量(q(e))与平衡质量浓度(C(e))之间的关系符合朗缪尔等温吸附方程。采用包括伪一级、伪二级和埃洛维奇方程模型在内的三种动力学模型来分析Cd(2+)的吸附过程。伪二级化学反应动力学与实验数据的相关性最好,因此吸附动力学遵循伪二级动力学规律。

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