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层电荷对膨胀黏土中 CO 和 HO 插层的影响。

Effect of Layer Charge on CO and HO Intercalations in Swelling Clays.

机构信息

Department of Mechanical and Aerospace Engineering, The George Washington University , Washington, D.C. 20052, United States.

出版信息

Langmuir. 2016 Nov 8;32(44):11366-11374. doi: 10.1021/acs.langmuir.6b02326. Epub 2016 Oct 25.

Abstract

The effect of layer charge on the intercalation of supercritical carbon dioxide (scCO)-HO mixture in Na-montmorillonite clay interlayers under T = 323 K and P = 90 bar geologic sequestration conditions has been further investigated. This effect includes the charge amount and its location (within either octahedral or tetrahedral layers due to isomorphic substitutions). Two clay models with different layer charges are used in this study. Simulation results show that the increase of charge amount shifts the monolayer-to-bilayer (1W-to-2W) hydration transition toward the lower relative humidity (RH), increasing water sorption at the expense of reducing the overall sorption amount of CO in the clay interlayer. However, the combination of the influence of charge amount and charge location leads to insignificant changes in equilibrium basal spacings of the high- and low-charge clays. Molecular dynamics simulations show that the CO dimers, which are frequently seen in low-charge clay interlayers, vanish in high-charge clay interlayers even at low RH of 30%.

摘要

在 T=323K 和 P=90 巴的地质封存条件下,进一步研究了层电荷对超临界二氧化碳(scCO)-H₂O 混合物在钠蒙脱石粘土夹层中的插层作用。这种影响包括电荷数量及其位置(由于同晶取代,位于八面体或四面体层内)。本研究使用了两种具有不同层电荷的粘土模型。模拟结果表明,电荷数量的增加会将单层到双层(1W 到 2W)水合转变推向更低的相对湿度(RH),增加水的吸附,同时减少 CO 在粘土夹层中的总吸附量。然而,电荷数量和电荷位置的影响组合导致高电荷和低电荷粘土的平衡基面间距没有明显变化。分子动力学模拟表明,在低电荷粘土夹层中经常出现的 CO 二聚体,即使在 RH 低至 30%的情况下,也会在高电荷粘土夹层中消失。

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