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Equilibrium Analysis of Hydrogen Adsorption on Activated Carbon

机译:活性炭对氢吸附的平衡分析

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For developing carbon based adsorbents for hydrogen storage, Staram PCTPro E & E was employed and activated carbon SAC-02 having specific surface area about 2074 m~2 ·g~(-1) was selected to measure isotherms of hydrogen adsorption respectively from temperature range 77.15K-110.15K and 253.15K-293.15K. Isosteres of hydrogen adsorption on the activated carbon was then plotted to determine the isosteric heat of hydrogen adsorption, and temperature dependent of Henry law constants were further applied to set the limit isosteric heat of adsorption at zero surface coverage. Results show that the isosteric heat of adsorption is about 3.6-5.4 kJ·mol~(-1) with a mean value 4.38 kJ·mol~(-1) at zero surface coverage. Results also reveal that adsorption isosteres of adsorption data at different temperature regions bring about a different isosteric heat of adsorption due to the variation in contributions from thermal motion of adsorbate molecules. Conclusions are drawn that adsorption isosteres on the adsorption data in correspondence with the lowest and highest temperatures of the hydrogen storage system should be carried out to determine the isosteric heat of adsorption for effectively managing the thermal effect.
机译:用于开发储氢碳基吸附剂,Staram PCTPro E&E被使用和激活具有约2074米比表面积的碳SAC-02〜2·G〜(-1)被选为从温度范围分别测量氢吸附等温线77.15K-110.15K和:253.15k-293.15K。然后在活性炭吸附氢的电子等排体作图,以确定氢吸附,和温度相关的亨利定律常数的的等量吸附热被进一步应用于设置吸附的极限等量吸附热在零的表面覆盖。结果表明,吸附的等量吸附热为约3.6-5.4千焦·摩尔〜(-1),在零表面覆盖率的平均值4.38千焦·摩尔〜(-1)。结果还揭示了在不同温度区域带来吸附的不同等量吸附热吸附数据的吸附等排物由于从吸附物分子的热运动的贡献的变化。结论上绘制的吸附数据的吸附等排物对应于氢存储系统的最低和最高温度应进行以确定吸附的等量吸附热有效管理的热效应。

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