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METHANE STORAGE IN ACTIVATED CARBON FIBRES

机译:活性炭纤维中的甲烷储存

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摘要

Methane storage in two series of activated carbon fibres (ACF) has been studied. The two series have been prepared by activation with CO2 and steam of a petroleum-pitch based carbon fibre. Methane isotherms have been carried out in a gravimetric system up to 4 MPa. ACF are very promising materials for this purpose because they are essentially microporous activated carbons. The paper analyzes the different correlations found in the literature between methane storage capacity and parameters related with the porous texture. Our best correlation is found with the total micropore volume, noting that this micropore volume has to include both the narrow microporosity (size lower than 0.7 nm) and supermicroporosity (size between 0.7-2.0 mm). This statement is specially relevant for samples in which N-2 adsorption has diffusional limitations. Steam activation produces lower micropore volumes than CO2 and, hence, lower storage capacities. Methane storage capacities of 163 v/v are reached with the ACF prepared by CO2 activation. The delivery of methane obtained for the best samples is about 143 v/v. This value is very close to that aimed for a commercial application of space-filling shapes of activated carbons. (C) 1997 Elsevier Science Ltd. All rights reserved. References: 15
机译:已经研究了两个系列活性炭纤维(ACF)中的甲烷储存。这两个系列是通过用二氧化碳和蒸汽活化石油沥青基碳纤维制备的。甲烷等温线是在重力系统中进行的,最高可达 4 MPa。ACF是非常有前途的材料,因为它们本质上是微孔活性炭。本文分析了文献中发现的甲烷储存容量与多孔质地相关参数之间的不同相关性。我们发现与总微孔体积的最佳相关性,注意到该微孔体积必须包括窄微孔(尺寸小于 0.7 nm)和超微孔(尺寸在 0.7-2.0 毫米之间)。该声明特别适用于N-2吸附具有扩散限制的样品。蒸汽活化产生的微孔体积比 CO2 低,因此储存容量更低。通过CO2活化制备的ACF可达到163 v/v的甲烷储存能力。为最佳样品获得的甲烷输送量约为 143 v/v。该值非常接近活性炭空间填充形状的商业应用。(C) 1997 Elsevier Science Ltd.保留所有权利。[参考文献: 15]

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