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蒸汽和KOH活化碳的孔隙率和吸附性能比较。

Comparisons of porous and adsorption properties of carbons activated by steam and KOH.

作者信息

Wu Feng-Chin, Tseng Ru-Ling, Juang Ruey-Shin

机构信息

Department of Chemical Engineering, National United University, Miao-Li 360, Taiwan.

出版信息

J Colloid Interface Sci. 2005 Mar 1;283(1):49-56. doi: 10.1016/j.jcis.2004.08.037.

Abstract

In this work, fir woods and pistachio shells were used as source materials to prepare porous carbons, which were activated by physical (steam) and chemical (KOH) methods. Pore properties of these activated carbons including the BET surface area, pore volume, pore size distribution, and pore diameter were first characterized by a t-plot method based on N(2) adsorption isotherms. Highly porous activated carbons with BET surface area up to 1009-1096 m(2)/g were obtained. The steam and KOH activation methods produced carbons with mesopore content in the range 9-15 and 33-49%, respectively. The adsorption equilibria and kinetics of tannic acid, methylene blue, 4-chlorophenol, and phenol from water on such carbons at 30 degrees C were then investigated to check their chemical characteristics. The Freundlich equation gave a better fit to all adsorption isotherms than the Langmuir equation. On the other hand, the intraparticle diffusion model could best follow all adsorption processes. In comparison with KOH-activated carbons, it was shown that the rate of external surface adsorption with steam-activated carbons was significantly higher but the rate of intraparticle diffusion was much lower.

摘要

在这项工作中,以杉木和开心果壳为原料制备多孔碳,并采用物理(蒸汽)和化学(KOH)方法对其进行活化。首先基于N₂吸附等温线,采用t-plot法对这些活性炭的孔隙特性进行表征,包括BET表面积、孔体积、孔径分布和孔径。获得了BET表面积高达1009 - 1096 m²/g的高孔隙率活性炭。蒸汽活化法和KOH活化法制备的活性炭中,中孔含量分别在9% - 15%和33% - 49%范围内。随后研究了30℃下,单宁酸、亚甲基蓝、4 - 氯苯酚和苯酚在这些活性炭上从水中的吸附平衡和动力学,以考察其化学特性。与Langmuir方程相比,Freundlich方程能更好地拟合所有吸附等温线。另一方面,颗粒内扩散模型最能描述所有吸附过程。结果表明,与KOH活化的活性炭相比,蒸汽活化的活性炭外表面吸附速率显著更高,但颗粒内扩散速率要低得多。

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