物理吸附
氢气储存
吸附剂
吸附
微型多孔材料
氢
多孔性
材料科学
化学工程
体积热力学
多孔介质
吸附低温
化学
热力学
复合材料
有机化学
物理
工程类
作者
Moisés Bastos-Neto,Christin Patzschke,Marcus Lange,Jens Möllmer,Andreas Möller,Sven Fichtner,Christian Schrage,Daniel Lässig,Jörg Lincke,R. Staudt,Harald Krautscheid,Roger Gläser
摘要
As a basis for the evaluation of hydrogen storage by physisorption, adsorption isotherms of H2 were experimentally determined for several porous materials at 77 K and 298 K at pressures up to 15 MPa. Activated carbons and MOFs were studied as the most promising materials for this purpose. A noble focus was given on how to determine whether a material is feasible for hydrogen storage or not, dealing with an assessment method and the pitfalls and problems of determining the viability. For a quantitative evaluation of the feasibility of sorptive hydrogen storage in a general analysis, it is suggested to compare the stored amount in a theoretical tank filled with adsorbents to the amount of hydrogen stored in the same tank without adsorbents. According to our results, an “ideal” sorbent for hydrogen storage at 77 K is calculated to exhibit a specific surface area of >2580 m2 g−1 and a micropore volume of >1.58 cm3 g−1.
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