会议论文详细信息
6th Annual International Conference on Material Science and Engineering
Preparation and phenol adsorption property of tobacco stem based modified porous materials
Zhang, L.^1 ; Zhang, T.D.^1 ; Gao, R.^1 ; Zhao, Y.L.^1 ; Zhang, W.^1 ; Tang, D.Y.^1 ; Jiao, J.^2 ; Ma, H.Y.^3 ; Yang, J.Y.^1
R and D Center, China Tobacco Yunnan Industrial Co., Ltd, Kunming
650231, China^1
Hongyun Honghe Tobacco (Group) Co., Ltd., Kunming
650231, China^2
Yunnan Tobacco Quality Supervision and Inspection Station, Kunming
650106, China^3
关键词: Adsorption behavior;    Adsorption isotherm model;    Adsorption kinetics;    Adsorption thermodynamics;    Freundlich isotherm;    Physical adsorption;    Second order kinetics;    Structural characteristics;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/397/1/012131/pdf
DOI  :  10.1088/1757-899X/397/1/012131
来源: IOP
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【 摘 要 】

Tobacco stem based modified porous materials were prepared by a combined methods of fermentation, microwave drying, anulation, semi-carbonization and modification, in which the residue of tobacco stem was used as raw material, and the KOH was used as modifier. The structural characteristics and properties of the porous materials were characterized by the scanning electron microscopy, specific surface areas, pore analyzer and infrared analyzer. The adsorption isotherm model, the adsorption kinetics analysis, the adsorption thermodynamics of phenol solution were analyzed. The results showed that: the excellent produced conditions for the porous materials were as follows: The surface of the porous materials modified by the KOH was typical porous structure, which mainly based on a large number of cavities and pores. The material had higher specific surface areas and pore volumes. The porous materials possesses more abundant functional groups, such as -OH, -CH and other functional groups, so that the material had a certain pro-organics. The adsorption isotherm model of phenol solution was simulated, which accorded with Freundlich isotherm adsorption equation model. The quasi-second-order kinetic model is suitable for the adsorption of the modified porous materials.The study of the adsorption thermodynamics showed that the adsorption was physical adsorption, and the adsorption behavior was exothermic.

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