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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Optimization of highly microporous activated carbon preparation from Moso bamboo using central composite design approach
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Optimization of highly microporous activated carbon preparation from Moso bamboo using central composite design approach

机译:使用中心复合设计方法优化毛竹的高微孔活性炭制备。

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摘要

Highly microporous activated carbons were prepared from Moso bamboo (Phyllostachys pubescens) using physical (steam) and chemical (KOH) activation. Increasing activation temperature and time was shown to increase the surface area and microporosity of activated carbons, which were further reduced due to over-gasification. Development of micropores was clearly observed based on N-2 adsorption isotherms. Steam activation temperature at 800 degrees C and activation time of 2.25 h can achieve large total surface area (S-BET) of 1135 m(2)/g and micropore volume of 0.521 cm(3)/g. For KOH activation (KOH/char mass ratio = 2), the 800 degrees C activation temperature and 2.25 h activation time resulted in S-BET of 1673 m(2)/g and micropore volume of 0.847 cm(3)/g. For KOH activation with a KOH/sample mass ratio = 4, 870 degrees C activation temperature and 1.27 h activation time enhanced S-BET to 2527 m(2)/g and micropore volume to 0.96 cm(3)/g. Central-composite design approach appeared to successfully acquire the optimal activation conditions, which can be set at 835 degrees C +/- 5% with an activation time of 1.75 h +/- 30% for both physical and chemical activation. The optimal conditions could cause the resulting bamboo activated carbons with the greatest S-BET and sufficient microporosity. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用物理(蒸汽)和化学(KOH)活化作用,从毛竹(Phyllostachys pubescens)制备高微孔活性炭。活化温度和时间的增加显示出活性炭的表面积和微孔率的增加,由于过度气化,活性炭的表面积和微孔率进一步降低。基于N-2吸附等温线,清楚地观察到微孔的发展。蒸汽活化温度为800摄氏度,活化时间为2.25小时,可以实现1135 m(2)/ g的大总表面积(S-BET)和0.521 cm(3)/ g的微孔体积。对于KOH活化(KOH /炭质量比= 2),在800摄氏度的活化温度和2.25 h的活化时间下,S-BET为1673 m(2)/ g,微孔体积为0.847 cm(3)/ g。对于KOH /样品质量比= 4的KOH活化,870℃的活化温度和1.27 h的活化时间将S-BET增加到2527 m(2)/ g,微孔体积增加到0.96 cm(3)/ g。中央复合材料设计方法似乎成功地获得了最佳的活化条件,可以将其设置为835℃+/- 5%,物理和化学活化的活化时间为1.75 h +/- 30%。最佳条件可能导致所得的竹活性炭具有最大的S-BET和足够的微孔率。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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