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CO2 - Reinforced nanoporous carbon potential energy field during CO2/CH4 mixture adsorption. A comprehensive volumetric, in-situ IR, and thermodynamic insight

机译:CO2 - 增强纳米多孔碳电位能场在CO2 / CH4混合物吸附过程中。全面的体积,原位IR和热力学洞察力

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摘要

CO2/CH4 mixture adsorption is very important in different fields like, for example, a biogas purification. Using a comprehensive experimental approach based on volumetric and in-situ FTIR measurements the new results of CO2/CH4 mixture separation on a carbon film are reported. The application of this experimental approach makes it possible to elaborate the effect of enhanced CH4 adsorption at low CO2 concentrations in the adsorbed phase. The presence of this effect is proved experimentally for the first time. This effect is responsible for the deviation of Ideal Adsorption Solution model from the experimental data. To discuss separation mechanism the activity coefficients at constant spreading pressure values are calculated. At low spreading pressure, CO2 activity coefficient is strongly disturbed by the presence of CH4 molecules in the surface mixture. In contrast, the CH4 activity coefficients are remarkably influenced by adsorbed CO2 only at higher CO2 surface concentrations. The obtained activity coefficients are successfully described by a new modification of the Redlich-Kister equation. This modification takes into account the interaction between binary mixture components and an adsorbent. Finally we show that the studied carbon possesses very good CO2/CH4 mixture separation properties, comparable to those reported for other adsorbents.
机译:CO 2 / CH4混合物吸附在不同的领域中非常重要,例如沼气纯化。使用基于体积和原位FTIR测量的综合实验方法,报道了CO2 / CH4混合物在碳膜上分离的新结果。这种实验方法的应用使得可以在吸附相中阐述增强的CH4吸附在低CO 2浓度下的效果。在实验第一次证明这种效果的存在。这种效果是对实验数据的理想吸附解决方案模型的偏差负责。为了讨论分离机制,计算恒定扩散压力值处的活动系数。在低扩散压力下,通过表面混合物中的CH 4分子存在,CO 2活性系数强烈干扰。相反,CH 4活性系数仅受吸附的CO 2仅在较高的CO 2表面浓度下影响。通过Redlich-Kister方程的新修改成功地描述了所获得的活性系数。该修改考虑了二元混合物组分和吸附剂之间的相互作用。最后,我们表明研究的碳具有非常好的CO 2 / CH 4混合物分离性能,与其他吸附剂报道的那些相当。

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