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Experimental and modeling study of the adsorption of supercritical methane on a high surface activated carbon

机译:超临界甲烷在高表面活性炭上吸附的实验与模型研究

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The adsorption of methane on an activated carbon of high surface was measured in the range of 233-333 K and 0-10 MPa. The isotherms showed a considerably different feature than that measured on low surface carbon. A maximum appeared on isotherms at relatively low temperatures. All the experimental isotherms were well modeled by the Langmuir-Freundlich equation. The difference between the measured and the so-called absolute adsorption was properly accounted for in modeling. An assumption of monolayer adsorbate adsorbed was included in the model. The layer volume evaluated was consistent with the pore volume of adsorbent reported by CO2 adsorption. The intermolecular distance in the adsorbed phase was evaluated from a model parameter. This intermolecular distance was compared with that in the free sate, which revealed a basic picture of the physical state of the adsorbed phase at above-critical temperatures. [References: 20]
机译:在233-333 K和0-10 MPa的范围内测量了甲烷在高表面活性炭上的吸附。等温线显示出与在低表面碳上测得的特征明显不同的特征。在相对较低的温度下,等温线出现最大值。所有的实验等温线都通过Langmuir-Freundlich方程很好地建模。在建模中适当考虑了所测得的吸附量和所谓的绝对吸附量之间的差异。模型中包含吸附的单层吸附物的假设。评价的层体积与通过CO 2吸附报道的吸附剂的孔体积一致。从模型参数评价吸附相中的分子间距离。将该分子间距离与游离状态下的分子间距离进行了比较,这揭示了在高于临界温度下吸附相的物理状态的基本情况。 [参考:20]

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