Competitive Sorption of CO2 and H2O in 2:1 Layer Phyllosilicates.

Abstract: 

The salting out effect, where increasing the ionic strength of aqueous solutions decreases the solubility of dissolved gases is a well-known phenomenon. Less explored is the opposite process where an initially anhydrous system containing a volatile, relatively non-polar component and inorganic ions is systematically hydrated. Expandable clays such as montmorillonite are ideal systems for exploring this scenario as they have readily accessible exchange sites containing cations that can be systematically dehydrated or hydrated, from near anhydrous to almost bulk-like water conditions. This phenomenon has new significance with the simultaneous implementation of geological sequestration and secondary utilization of CO2 to both mitigate climate warming and enhance extraction of methane from hydrated clay-rich formations. Here, the partitioning of CO2 and H2O between Na-, Ca-, and Mg-exchanged montmorillonite and variably hydrated supercritical CO2 (scCO2) was investigated using in situ X-ray diffraction, infrared (IR)spectroscopic titrations, and quartz crystal microbalance (QCM) measurements. Density functional theory calculations provided mechanistic insights. Structural volumetric changes were correlated to quantified changes in sorbed H2O and CO2 concentrations as a function of %H2O saturated in scCO2. Intercalation of CO2 is favored at low H2O/CO2 ratios in the interlayer region, where CO2 can solvate the interlayer cation. As the clay becomes more hydrated and the H2O/CO2 ratio increases, H2O displaces CO2 from the solvation shell of the cation and CO2 tends to segregate. This transition decreases both the entropic and enthalpic driving force for CO2 intercalation, consistent with experimentally observed loss of intercalated CO2.

Citation: 
Schaef HT, JS Loring, VA Glezakou, QR Miller, J Chen, AT Owen, MS Lee, ES Ilton, AR Felmy, BP McGrail, and CJ Thompson.2015."Competitive Sorption of CO2 and H2O in 2:1 Layer Phyllosilicates."Geochimica et Cosmochimica Acta 16:248-257. doi:10.1016/j.gca.2015.03.027
Authors: 
HT Schaef
JS Loring
VA Glezakou
QR Miller
J Chen
AT Owen
MS Lee
ES Ilton
AR Felmy
BP McGrail
CJ Thompson
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Publication year: 
2015