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Activated Carbon Fibre Monoliths for Hydrogen Storage

机译:用于储氢的活性炭纤维整料

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Porous adsorbents are currently investigated for hydrogen storage application. From a practical point of view, in addition to high porosity developments, high material densities are required, in order to confine as much material as possible in a tank device. In this study, we use different measured sample densities (tap, packing, compacted and monolith) for analyzing the hydrogen adsorption behavior of activated carbon fibres (ACFs) and activated carbon nanofibres (ACNFs) which were prepared by KOH and CO2 activations, respectively. Hydrogen adsorption isotherms are measured for all of the adsorbents at room temperature and under high pressures (up to 20 MPa). The obtained results confirm that (i) gravimetric H2 adsorption is directly related to the porosity of the adsorbent, (ii) volumetric H2 adsorption depends on the adsorbent porosity and importantly also on the material density, (iii) the density of the adsorbent can be improved by packing the original adsorbents under mechanical pressure or synthesizing monoliths from them, (iv) both ways (packing under pressure or preparing monoliths) considerably improve the storage capacity of the starting adsorbents, and (v) the preparation of monoliths, in addition to avoid engineering constrains of packing under mechanical pressure, has the advantage of providing high mechanical resistance and easy handling of the adsorbent.
机译:目前研究多孔吸附剂用于储氢应用。从实际的角度来看,除了高孔隙度发展之外,需要高质量的密度,以便在罐装置中限制尽可能多的材料。在这项研究中,我们使用不同的测量样品密度(Tap,Packing,Compacted和Monolith)分别通过KOH和CO 2活性制备的活性炭纤维(ACFS)和活性炭纳米纤维(ACNF)的氢吸收行为。在室温下的所有吸附剂和高压下(高达20MPa)测量氢吸附等温物。得到的结果证实(i)重量谱H 2吸附与吸附剂的孔隙率直接相关,(ii)体积H 2吸附取决于吸附孔隙率,并且重要的是还对材料密度,(iii)可以是物质密度的密度通过在机械压力下填充原始吸附剂或合成来自它们的整料(IV)(在压力或制备整料下的填充)的储存能力来改善,显着提高起始吸附剂的储存能力,以及(v)除此之外避免在机械压力下填充的工程限制,具有提供高机械性和容易处理吸附剂的优点。

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