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首页> 外文期刊>Bulletin of the Korean Chemical Society >Preparation and Characterization of Sisal Fiber-based Activated Carbon by Chemical Activation with Zinc Chloride
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Preparation and Characterization of Sisal Fiber-based Activated Carbon by Chemical Activation with Zinc Chloride

机译:氯化锌化学活化法制备剑麻纤维基活性炭

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摘要

Sisal fiber, an agricultural resource abundantly available in china, has been used as raw material to prepare activated carbon with high surface area and huge pore volume by chemical activation with zinc chloride. The orthogonal test was designed to investigate the influence of zinc chloride concentration, impregnation ratio, activation temperature and activation time on preparation of activated carbon. Scanning electron micrograph, Thermo-gravimetric, N2-adsorption isotherm, mathematical models such as t-plot, H-K equation, D-R equation and BJH methods were used to characterize the properties of the prepared carbons and the activation mechanism was discussed. The results showed that ZnCl2 changed the pyrolysis process of sisal fiber. Characteristics of activated carbon are: BET surface area was 1628 m~2/g, total pore volume was 1.316 m~3/g and ratio of mesopore volume to total pore volume up to 94.3%. These results suggest that sisal fiber is an attractive source to prepare mesoporous high-capacity activated carbon by chemical activation with zinc chloride.
机译:剑麻纤维是一种在中国拥有丰富的农业资源,已被用作原料,通过氯化锌的化学活化来制备高表面积和大孔体积的活性炭。设计正交试验以研究氯化锌浓度,浸渍率,活化温度和活化时间对活性炭制备的影响。利用扫描电子显微镜,热重,N2-吸附等温线,t-图,H-K方程,D-R方程和BJH方法等数学模型表征了所制备碳的性质,并探讨了活化机理。结果表明,ZnCl2改变了剑麻纤维的热解过程。活性炭的特征是:BET表面积为1628m 2 / g,总孔体积为1.316m 3 / g,中孔体积与总孔的比例高达94.3%。这些结果表明,剑麻纤维是通过氯化锌化学活化制备介孔高容量活性炭的诱人来源。

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