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- W2593816076 abstract "We perform grand canonical Monte Carlo simulations to study the detailed molecular mechanism of intercalation behavior of CO2 in Na-, Ca-, and Mg-montmorillonite exposed to variably hydrated supercritical CO2 at 323.15 K and 90 bar. The simulations indicate that the intercalation of CO2 strongly depends on the relative humidity (RH). The intercalation of CO2 in the dehydrated interlayer is inhibited, followed by the swelling of the interlayer region due to uptake of water and CO2 as the RH increases. In all of the hydrated clay samples, the amount of the intercalated CO2 generally decreases as a function of increasing RH, which is attributed mainly to the weakening of the interaction between CO2 and clay. At low RH values, Ca- and Mg-montmorillonite are relatively more efficient in capturing CO2. The amount of CO2 trapped in all clay samples shows similar values above RH of ∼60%. Molecular dynamics simulations show that the diffusion coefficient of each species generally increases with increasing RH due t..." @default.
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- W2593816076 date "2017-03-15" @default.
- W2593816076 modified "2023-09-24" @default.
- W2593816076 title "Molecular Simulation Study of Montmorillonite in Contact with Variably Wet Supercritical Carbon Dioxide" @default.
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- W2593816076 doi "https://doi.org/10.1021/acs.jpcc.7b01027" @default.
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