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苯酚在不同活化程度制备的活性炭上的液相吸附

Liquid-Phase Adsorption of Phenol onto Activated Carbons Prepared with Different Activation Levels.

作者信息

Hsieh CT, Teng H

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan, 70101, Taiwan

出版信息

J Colloid Interface Sci. 2000 Oct 1;230(1):171-175. doi: 10.1006/jcis.2000.7052.

Abstract

The influence of the pore size distribution of activated carbon on the adsorption of phenol from aqueous solutions was explored. Activated carbons with different porous structures were prepared by gasifying a bituminous coal char to different extents of burn-off. The results of adsorption experiments show that the phenol capacity of these carbons does not proportionally increase with their BET surface area. This reflects the heterogeneity of the carbon surface for adsorption. The pore size distributions of these carbons, determined according to the Dubinin-Stoeckli equation, were found to vary with the burn-off level. By incorporating the distribution with the Dubinin-Radushkevich equation using an inverse proportionality between the micropore size and the adsorption energy, the isotherms for the adsorption of phenol onto these carbons can be well predicted. The present study has demonstrated that the heterogeneity of carbon surface for the phenol adsorption can be attributed to the different energies required for adsorption in different-size micropores. Copyright 2000 Academic Press.

摘要

研究了活性炭孔径分布对水溶液中苯酚吸附的影响。通过将烟煤焦气化至不同的烧失程度,制备了具有不同多孔结构的活性炭。吸附实验结果表明,这些活性炭对苯酚的吸附量并不随其BET表面积成比例增加。这反映了碳表面吸附的不均匀性。根据杜宾宁-斯托克利方程确定的这些活性炭的孔径分布随烧失程度而变化。通过使用微孔尺寸与吸附能之间的反比例关系,将该分布与杜宾宁-拉杜什凯维奇方程相结合,可以很好地预测苯酚在这些活性炭上的吸附等温线。本研究表明,碳表面对苯酚吸附的不均匀性可归因于不同尺寸微孔中吸附所需的不同能量。版权所有2000年学术出版社。

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