Influence of Super-Critical CO2 on the Strength and Fracture Behavior of Brine-Saturated Sandstone Specimens
The mechanical behavior of rock is one of the most important parameters to evaluate the potential for geological carbon dioxide (CO 2 ) sequestration (GCS); therefore, the study of rock strength evolution and fracture behavior after CO 2 injection is helpful in the long-term stability and safety of...
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Veröffentlicht in: | Rock mechanics and rock engineering 2020-02, Vol.53 (2), p.653-670 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The mechanical behavior of rock is one of the most important parameters to evaluate the potential for geological carbon dioxide (CO
2
) sequestration (GCS); therefore, the study of rock strength evolution and fracture behavior after CO
2
injection is helpful in the long-term stability and safety of GCS engineering. In this study, uniaxial compression, Brazilian splitting and fracture tests were carried out on sandstone specimens with brine saturation or brine-super critical CO
2
(scCO
2
) co-saturation. The influences of brine salinity and scCO
2
injection on the uniaxial compressive strength (UCS), Brazilian tensile strength (BTS) and fracture toughness of sandstone were investigated. The experimental results showed that the UCS, BTS and fracture toughness of brine-saturated sandstone increased with increasing NaCl concentration but decreased after scCO
2
injection. Furthermore, increments in the elastic modulus and average stiffness of brine-scCO
2
co-saturated sandstone were observed relative to those under brine saturation. To investigate the change of mineral composition and micro structure during brine immersion and scCO
2
injection, X-ray diffraction analysis, scanning electron microscopic observation and mercury intrusion porosimetry test were performed. Composition changes and dissolution of quartz were not observed, but many micro pores were created after scCO
2
injection, thus increasing the porosity and reducing strength and fracture toughness. Finally, the mechanism of brine-scCO
2
saturation in altering mechanical properties was discussed. These experimental results are expected to increase the understanding of the mechanical response of rock after scCO
2
injection in deep saline aquifers. |
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ISSN: | 0723-2632 1434-453X |
DOI: | 10.1007/s00603-019-01933-2 |