Impact of surfactants on CO2-brine relative permeability under reservoir conditions

Author:

Seok Gi-BeomORCID,Park Yong-ChanORCID,Lee Joo Yong,Lee Yeon-Kyeong,Kim Kue-YoungORCID,Son Hanam,Raab Matthias

Funder

Korea Institute of Geoscience and Mineral Resources

Korea Institute of Energy Technology Evaluation and Planning

Ministry of Trade, Industry and Energy

Ministry of Science, ICT and Future Planning

Publisher

Elsevier BV

Subject

General Energy

Reference57 articles.

1. Geological carbon sequestration in the context of two-phase flow in porous media: a review;Abidoye;Crit. Rev. Environ. Sci. Technol.,2015

2. Water solubility in CO2 mixtures: Experimental and modelling investigation;Ahmad;Energy Procedia,2014

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. CO2 geo-storage capacity enhancement via nanofluid priming;Al-Anssari;Int. J. Greenhouse Gas Control,2017

5. Al-Menhali, A., Krevor, S., 2013. Pressure, temperature and ionic strength effects on the wettability of CO2-brine-sandstone system: Core-scale contact angle measurements. In: SCA2013-003 Paper Presented at the 2013 Society of Core Analysts Symposium in Napa Valley, California.

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