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Impact of the carbonisation temperature on the activation of carbon fibres and their application for hydrogen storage

机译:碳化温度对碳纤维活化及其在储氢中的应用的影响

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Porous materials are gaining interest due to their potential for storing hydrogen via physisorption. In the present work, two carbon fibres, carbonised at 973 and 1273 K, have been chemically activated with KOH and NaOH, in order to obtain materials with optimised characteristics for hydrogen storage application. Highly microporous activated carbon fibres were obtained from both precursors, especially from the fibre carbonised at the lower carbonisation temperature, remarking its importance on its subsequent activation process. As activation agent, KOH is more effective for developing the narrow microporosity, and higher yields are obtained. H_2 adsorption isotherms were measured at 298 K for pressures up to 20MPa, and at 77 K up to 4MPa. The maximum excess adsorption of hydrogen reached 1 wt% at 298 K and 3.8 wt% at 77 K. The total volumetric storage capacity is of 17 g/l at 298 K, and 32g/l at 77K.
机译:多孔材料由于其通过物理吸附而储存氢的潜力而受到关注。在目前的工作中,已经用KOH和NaOH对在973和1273 K碳化的两根碳纤维进行了化学活化,以便获得具有用于储氢应用的优化特性的材料。从这两种前体,特别是在较低的碳化温度下碳化的纤维,都获得了高微孔活性炭纤维,这表明其对随后的活化过程很重要。作为活化剂,KOH对于产生窄的微孔性更有效,并且获得更高的产率。在最高压力为20MPa的情况下,在298 K下测量了H_2吸附等温线,在最高压力为4MPa的条件下,在77 K下测量了H_2吸附等温线。氢的最大过量吸附在298 K时达到1 wt%,在77 K时达到3.8 wt%。总体积存储容量在298 K时为17 g / l,在77K时为32 g / l。

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