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Molecular Dynamics Simulations of Carbon Dioxide, Methane, and Their Mixture in Montmorillonite Clay Hydrates

机译:蒙脱石粘土水合物中二氧化碳,甲烷及其混合物的分子动力学模拟

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摘要

Molecular dynamics simulations were carried out to study the structural and transport properties of carbon dioxide, methane, and their mixture at 298.15 K in Na-montmorillonite clay in the presence of water. The simulations show that, the self-diffusion coefficients of pure CO2 and CH4 molecules in the interlayers of Na-montmorillonite decrease as their loading increases, possibly because of steric hindrance. The diffusion of CO2 in the interlayers of Na-montmorillonite, at constant loading of CO2, is not significantly affected by CH4 for the investigated CO2/CH4 mixture compositions. We attribute this to the preferential adsorption of CO2 over CH4 in Na-montmorillonite. While the presence of adsorbed CO2 molecules, at constant loading of CH4, very significantly reduces the self-diffusion coefficients of CH4, and relatively larger decrease in those diffusion coefficients are obtained at higher loadings. The preferential adsorption of CO2 molecules to the clay surface screens those possible attractive surface sites for CH4. The competition between screening and steric effects leads to a very slight decrease in the diffusion coefficients of CH4 molecules at low CO2 loadings. The steric hindrance effect, however, becomes much more significant at higher CO2 loadings and the diffusion coefficients of methane molecules significantly decrease. Our simulations also indicate that, similar effects of water on both carbon dioxide and methane, increase with increasing water concentration, at constant loadings of CO2 and CH4 in the interlayers of Na-montmorillonite. Our results could be useful, because of the significance of shale gas exploitation and carbon dioxide storage.
机译:进行了分子动力学模拟,研究了在水存在下Na-蒙脱土中298.15 K时二氧化碳,甲烷及其混合物的结构和传输特性。模拟表明,Na-蒙脱土夹层中纯CO2和CH4分子的自扩散系数随其载荷的增加而降低,这可能是由于空间位阻所致。对于所研究的CO2 / CH4混合物组成,在恒定CO2负载下,Na2 +蒙脱土夹层中CO2的扩散不受CH4的显着影响。我们将其归因于在蒙脱土中CO2优先于CH4的吸附。当吸附的CO2分子存在时,在CH4的恒定负载下,非常显着地降低了CH4的自扩散系数,而在较高的负载下,这些扩散系数的降低幅度较大。 CO2分子在粘土表面的优先吸附作用会筛选出CH4可能吸引的表面位置。筛选效应和空间效应之间的竞争导致低CO2负载下CH4分子的扩散系数非常轻微的降低。但是,在较高的CO2负荷下,空间位阻效应变得更加明显,甲烷分子的扩散系数显着降低。我们的模拟还表明,在Na-蒙脱土层间层中,在恒定的CO2和CH4负荷下,水对二氧化碳和甲烷的相似影响会随着水浓度的增加而增加。由于页岩气开采和二氧化碳存储的重要性,我们的结果可能是有用的。

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