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氢气在功能化纳米多孔活性炭上的吸附

Hydrogen adsorption on functionalized nanoporous activated carbons.

作者信息

Zhao X B, Xiao B, Fletcher A J, Thomas K M

机构信息

Northern Carbon Research Laboratories, School of Natural Sciences, Bedson Building, University of Newcastle upon Tyne, Newcastle upon Tyne, NE1 7RU, UK.

出版信息

J Phys Chem B. 2005 May 12;109(18):8880-8. doi: 10.1021/jp050080z.

Abstract

There is considerable interest in hydrogen adsorption on carbon nanotubes and porous carbons as a method of storage for transport and related energy applications. This investigation has involved a systematic investigation of the role of functional groups and porous structure characteristics in determining the hydrogen adsorption characteristics of porous carbons. Suites of carbons were prepared with a wide range of nitrogen and oxygen contents and types of functional groups to investigate their effect on hydrogen adsorption. The porous structures of the carbons were characterized by nitrogen (77 K) and carbon dioxide (273 K) adsorption methods. Hydrogen adsorption isotherms were studied at 77 K and pressure up to 100 kPa. All the isotherms were Type I in the IUPAC classification scheme. Hydrogen isobars indicated that the adsorption of hydrogen is very temperature dependent with little or no hydrogen adsorption above 195 K. The isosteric enthalpies of adsorption at zero surface coverage were obtained using a virial equation, while the values at various surface coverages were obtained from the van't Hoff isochore. The values were in the range 3.9-5.2 kJ mol(-1) for the carbons studied. The thermodynamics of the adsorption process are discussed in relation to temperature limitations for hydrogen storage applications. The maximum amounts of hydrogen adsorbed correlated with the micropore volume obtained from extrapolation of the Dubinin-Radushkevich equation for carbon dioxide adsorption. Functional groups have a small detrimental effect on hydrogen adsorption, and this is related to decreased adsorbate-adsorbent and increased adsorbate-adsorbate interactions.

摘要

将碳纳米管和多孔碳用于氢气吸附作为运输及相关能源应用的一种储存方法备受关注。本研究系统地考察了官能团和多孔结构特征在决定多孔碳氢气吸附特性方面的作用。制备了一系列氮氧含量及官能团类型各异的碳材料,以研究它们对氢气吸附的影响。通过氮气(77K)和二氧化碳(273K)吸附法对这些碳材料的多孔结构进行了表征。在77K及高达100kPa的压力下研究了氢气吸附等温线。在IUPAC分类方案中,所有等温线均为I型。氢气等压线表明,氢气吸附对温度非常敏感,在195K以上几乎没有氢气吸附。利用维里方程获得了零表面覆盖度下的等量吸附热,而通过范特霍夫等容线获得了不同表面覆盖度下的等量吸附热。所研究碳材料的这些值在3.9 - 5.2kJ mol(-1)范围内。结合氢气储存应用的温度限制,讨论了吸附过程的热力学。吸附的氢气最大量与通过对二氧化碳吸附的杜比宁-拉杜什凯维奇方程外推得到的微孔体积相关。官能团对氢气吸附有较小的不利影响,这与吸附质-吸附剂相互作用的减少以及吸附质-吸附质相互作用的增加有关。

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