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Molecular Mechanisms of the Effect of Water on CO2/CH4 Mixture Adsorption in Slitlike Carbon Pores

机译:水对狭缝碳孔中CO2 / CH4混合物吸附的影响的分子机制

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摘要

The grand canonical ensemble Monte Carlo method has been used to study adsorption of carbon dioxide, methane, and their mixtures with different compositions in slitlike carbon pores at a temperature of 318 K and pressures below 60 atm. The data obtained have been used to show the effect of fixed amounts of pre-adsorbed water (19, 37, and 70 vol %) on the adsorption capacity and selectivity of carbon micro- and mesopores. The presence of water reduces the adsorption capacity throughout the studied pressure range upon adsorption of gaseous mixtures containing less than 50% CO2, as well as in narrow micropores (with widths of 8-12 ). Upon adsorption of mixtures with CO2 contents higher than 50%, the adsorption capacity of pores with low water contents appears, in some region of the isotherm, to be higher than that in dry pores. In the case of wide pores (16 and 20 ), this region is located at low and moderate pressures, while for mesopores it is located at high pressures. The analysis of the calculated data has shown that the molecular mechanism of the influence of preadsorbed water on the adsorption capacity is based on the competition between the volume accessible for adsorption (decreases the capacity) and the strength of the interaction between carbon dioxide molecules and water molecules (increases the capacity). Therewith, the larger the surface area of the water-gas contact, the stronger the H2O-CO2 interactions.
机译:Grand Canonical集合Monte Carlo方法已被用于研究二氧化碳,甲烷及其混合物的吸附在318k的温度下,在狭缝碳孔中的不同组合物和60atm以下的压力。已经使用的数据用于显示固定量的预吸附水(19,37和70体积%)对碳微孔和中孔的吸附能力和选择性的影响。在吸附含有少于50%CO 2的气态混合物的气态混合物以及窄微孔(宽度为8-12)时,水的存在降低了整个研究压力范围内的吸附容量。在高于50%的二氧化碳含量吸附混合物后,在等温物的某个区域中出现具有低水含量低的孔的吸附能力,高于干孔中的孔隙。在宽孔(16和20)的情况下,该区域位于低且中等压力下,同时其用于高压以高压。计算数据的分析表明,预解痉水对吸附能力的影响是基于可吸附(减少容量)和二氧化碳分子与水之间相互作用强度之间的竞争的基础分子(增加容量)。因此,水气接触的表面积越大,H 2 O-CO2相互作用越强。

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  • 来源
    《Colloid journal》 |2018年第4期|共8页
  • 作者单位

    St Petersburg State Univ St Petersburg 198504 Russia;

    St Petersburg State Univ St Petersburg 198504 Russia;

    St Petersburg State Univ St Petersburg 198504 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 胶体;
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