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A comparative study of hydrogen adsorption on superactivated carbon versus carbon nanotubes

机译:超活性碳与碳纳米管对氢吸附的比较研究

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Adsorption isotherms of hydrogen on activated carbon and multiwalled carbon nanotubes (MWNT) were collected using volumetric method for the range of 233-298 K and pressures up to 11 Mpa. The same shape of isotherms revealed a common mechanism of adsorption. However, the amount of H_2 adsorbed on MWNT is 3-5 times less than on activated carbon, but the surface concentration of H_2 on MWNT is 4-6 times higher than on activated carbon. Temperature exerts much less effect on the adsorption of H_2 on MWNT than on the adsorption of H2 on activated carbon. Isosteric heat of adsorption was evaluated from a set of isotherms basing on the Clausius-Clapeyron equation, and -1.7 kJ/mol was obtained for MWNT, -6.4 kJ/mol was obtained for activated carbon. Considering the much less quantity adsorbed, the much less heat of adsorption and the much smaller surface area, carbon nanotubes seem not to be a promising carrier of hydrogen for practical applications.
机译:使用体积法收集了在活性炭和多壁碳纳米管(MWNT)上的氢吸附等温线,测量范围为233-298 K,压力最高为11 Mpa。相同形状的等温线揭示了常见的吸附机理。但是,MWNT上吸附的H_2量比活性炭少3-5倍,但是MWNT上H_2的表面浓度比活性炭高4-6倍。温度对MWNT上H_2的吸附作用远小于对活性炭上H2的吸附作用。根据Clausius-Clapeyron方程,根据一组等温线评估吸附的等位热,MWNT为-1.7 kJ / mol,活性炭为-6.4 kJ / mol。考虑到更少的吸附量,更少的吸附热和更小的表面积,对于实际应用,碳纳米管似乎不是有希望的氢载体。

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