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Regional CO2 solubility trapping potential of a deep saline aquifer in Pohang basin, Korea

Title
Regional CO2 solubility trapping potential of a deep saline aquifer in Pohang basin, Korea
Author
성원모
Keywords
CO2 storage; geological structure; solubility trapping; saline aquifers
Issue Date
2016-02
Publisher
GEOLOGICAL SOCIETY KOREA
Citation
GEOSCIENCES JOURNAL, v. 20, NO 4, Page. 561-568
Abstract
This paper presents regional CO2 solubility trapping potential for stable CO2 storage as immobile phase and decomposed form while CO2 migrates through flow pathways characterized by the geological structure of an aquifer in Pohang basin, SE offshore Korea. The saline aquifer in Pohang basin has been selected as a target formation for geologic carbon storage due to favorable geologic structures and sedimentary strata defined through seismic survey. The aquifer is confined by southeast and northwest faults, and structure is unconfined and sloping toward the northeast direction. The main target within the aquifer to store CO2 contains west plunging anticlines. In order to enlarge contact area of CO2 with brine and improve injectivity, the CO2 injector is located on marginal anticlines or small synclines. This structure may significantly affect CO2 flow dynamics through upward migration pathways within the aquifer. We, in this area, provide estimates for CO2 solubility trapping affected by dynamic CO2 migration pathways and present different types of CO2 trapping potentials. The numerical results based on thermodynamic equilibrium equation provide regional CO2 solubility trapping potential which has a linear relationship with brine salinity. We suggest that dynamic migration pathways resulting from geological structure are significantly important to increase CO2 solubility trapping potential in geological storage of CO2.
URI
https://link.springer.com/article/10.1007%2Fs12303-015-0068-4http://hdl.handle.net/20.500.11754/33957
ISSN
1226-4806; 1598-7477
DOI
10.1007/s12303-015-0068-4
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > EARTH RESOURCES AND ENVIRONMENTAL ENGINEERING(자원환경공학과) > Articles
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