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由粉煤灰合成的沸石对铜(II)的吸附性能

Adsorption properties of zeolites synthesized from coal fly ash for Cu (II).

作者信息

Song Huiping, Cheng Huaigang, Zhang Zepeng, Cheng Fangqin

出版信息

J Environ Biol. 2014 Sep;35(5):983-8.

Abstract

This study explored the hydrothermal synthesis of zeolites in a homogeneous reactor using coal fly ash (CFA) as a raw material via a two-step method at normal pressure. Fourier transform infrared spectroscopy and X-ray powder diffraction analysis showed that the synthetic products has the basic structural unit of microporous zeolite molecular sieves, and consiste of zeolite 4A and zeolite X. The ability of zeolites synthesized from CFAto adsorb Cu(ll) was studied. The optimal conditions for adsorption were as follows: pH 5 and dosage of modified CFA 4g l(-1). The isothermal adsorption of zeolites of Cu(ll) showed that the maximum adsorption quantity ranged from 69.44 (at 20 degrees C) to 140.85 mg g(-1) (at 50 degrees C). Adsorption kinetics analysis showed that chemical adsorption was the rate-controlling step. Apparent activation energy data, however, showed that the process of adsorption of Cu(II) had the features of physical adsorption. Thus, the adsorption process included both chemical and physical adsorption.

摘要

本研究探索了在常压下,以粉煤灰(CFA)为原料,通过两步法在均相反应器中进行水热合成沸石的过程。傅里叶变换红外光谱和X射线粉末衍射分析表明,合成产物具有微孔沸石分子筛的基本结构单元,且由4A沸石和X沸石组成。研究了由CFA合成的沸石对Cu(II)的吸附能力。吸附的最佳条件如下:pH值为5,改性CFA用量为4g l(-1)。沸石对Cu(II)的等温吸附表明,最大吸附量范围为69.44(在20℃时)至140.85mg g(-1)(在50℃时)。吸附动力学分析表明,化学吸附是速率控制步骤。然而,表观活化能数据表明,Cu(II)的吸附过程具有物理吸附的特征。因此,吸附过程包括化学吸附和物理吸附。

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