Supercritical CO 2 and brine displacement in geological carbon sequestration: Micromodel and pore network simulation studies

Author:

Cao Shuang Cindy,Dai Sheng,Jung Jongwon

Funder

FIER

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Industrial and Manufacturing Engineering,General Energy,Pollution

Reference69 articles.

1. CO2/CaCl2 solution interfacial tensions under CO2 geological storage conditions: influence of cation valence on interfacial tension;Aggelopoulos;Water Resour. Res.,2010

2. A simulation model for two-phase flow in porous media;Aker,1996

3. Relative permeability hysteresis and capillary trapping characteristics of supercritical CO2/brine systems: an experimental study at reservoir conditions;Akbarabadi;Adv. Water Resour.,2013

4. Interfacial tension between CO2, freshwater, and brine in the range of pressure from (2 to 27)MPa, temperature from (20 to 125)°C, and water salinity from (0 to 334000)mgL−1;Bachu;J. Chem. Eng.,2009

5. CO2 storage capacity estimation: methods and gaps;Bachu;Int. J. Greenh. Gas Control,2007

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