Literature DB >> 22404533

In situ X-ray diffraction study of Na+ saturated montmorillonite exposed to variably wet super critical CO2.

Eugene S Ilton1, H Todd Schaef, Odeta Qafoku, Kevin M Rosso, Andrew R Felmy.   

Abstract

Reactions involving variably hydrated super critical CO(2) (scCO(2)) and a Na saturated dioctahedral smectite (Na-STX-1) were examined by in situ high-pressure X-ray diffraction at 50 °C and 90 bar, conditions that are relevant to long-term geologic storage of CO(2). Both hydration and dehydration reactions were rapid with appreciable reaction occurring in minutes and near steady state occurring within an hour. Hydration occurred stepwise as a function of increasing H(2)O in the system; 1W, 2W-3W, and >3W clay hydration states were stable from ~2-30%, ~31-55 < 64%, and ≥ ~71% H(2)O saturation in scCO(2), respectively. Exposure of sub 1W clay to anhydrous scCO(2) caused interlayer expansion, not contraction as expected for dehydration, suggesting that CO(2) intercalated the interlayer region of the sub 1W clay, which might provide a secondary trapping mechanism for CO(2). In contrast, control experiments using pressurized N(2) and similar initial conditions as in the scCO(2) study, showed little to no change in the d(001) spacing, or hydration states, of the clay. A salient implication for cap rock integrity is that clays can dehydrate when exposed to wet scCO(2). For example, a clay in the ~3W hydration state could collapse by ~3 Å in the c* direction, or ~15%, if exposed to scCO(2) at less than or equal to about 64% H(2)O saturation.

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Year:  2012        PMID: 22404533     DOI: 10.1021/es300234v

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  Intercalation and retention of carbon dioxide in a smectite clay promoted by interlayer cations.

Authors:  L Michels; J O Fossum; Z Rozynek; H Hemmen; K Rustenberg; P A Sobas; G N Kalantzopoulos; K D Knudsen; M Janek; T S Plivelic; G J da Silva
Journal:  Sci Rep       Date:  2015-03-05       Impact factor: 4.379

2.  Supercritical CO2 uptake by nonswelling phyllosilicates.

Authors:  Jiamin Wan; Tetsu K Tokunaga; Paul D Ashby; Yongman Kim; Marco Voltolini; Benjamin Gilbert; Donald J DePaolo
Journal:  Proc Natl Acad Sci U S A       Date:  2018-01-16       Impact factor: 11.205

  2 in total

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