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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Advanced activated carbon monoliths and activated carbons for hydrogen storage
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Advanced activated carbon monoliths and activated carbons for hydrogen storage

机译:先进的活性炭整体和用于储氢的活性炭

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Results of hydrogen storage are presented for advanced activated carbon monoliths (ACM) and activated carbons (AC). It is shown that materials having both, high micropore volume and high packing density, are required to reach a high hydrogen adsorption capacity in volumetric basis. Advanced activated carbon monoliths (ACM) with good mechanical properties (maximum compression strength of 22 MPa), high micropore volume (up to 1.04 cm~3/g) and high density (up to 0.7 g cm~(-3)) have been prepared by optimizing the preparation conditions, reaching a hydrogen adsorption capacity of 29.7 g H2/l at 77 K and 4 MPa for the best ACM. The total storage capacity of a 1-1 container filled with this high-performance ACM has been estimated to be 39.3 g H2 at 4 MPa and 77 K. Comparison of the results obtained for advanced ACM with those reported in the literature for metal organic frameworks (MOF) points out that high performance ACM have a great potential as carriers of hydrogen. Moreover, the claimed advantages of MOF compared to activated carbons need further confirmation.
机译:给出了高级活性炭整料(ACM)和活性炭(AC)的储氢结果。已表明需要具有高微孔体积和高堆积密度的材料以体积为基础达到高的氢吸附能力。先进的活性炭整料(ACM)具有良好的机械性能(最大抗压强度为22 MPa),高微孔体积(高达1.04 cm〜3 / g)和高密度(高达0.7 g cm〜(-3))。通过优化制备条件制备的ACM达到最佳ACM,在77 K和4 MPa下达到29.7 g H2 / l的氢吸附容量。在4 MPa和77 K的压力下,装有这种高性能ACM的1-1容器的总存储容量估计为39.3 g H2。将高级ACM与金属有机骨架文献中报道的结果进行比较(MOF)指出,高性能ACM作为氢的载体具有巨大的潜力。此外,与活性炭相比,MOF要求保护的优势还需要进一步确认。

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