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An Environmental-Friendly Amphiphilic Molecule for Simultaneously Improving CO2 Geological Storage and Utilization
Yueliang Liu1,2, Zesen Peng1,2, Hanbo Kang1,2
1Hainan Research Institute, China University of Petroleum (Beijing), Sanya 572024, China.
A novel molecule (ARGS) boosts oil recovery and CO2 storage in low-permeability reservoirs. ARGS enhances CO2 solubility and wettability, improving storage efficiency and oil displacement.
Area of Science:
- Petroleum Engineering
- Geological Storage
- Enhanced Oil Recovery
Background:
- CO2 injection is key for geological storage and resource recovery in low-permeability reservoirs.
- Conventional CO2 flooding faces limitations due to substantial CO2 coproduction, reducing storage efficiency.
- Need for improved methods to enhance CO2 solubility, reduce interfacial tension, and manage wettability in saline conditions.
Purpose of the Study:
- To introduce a natural amphiphilic molecule (ARGS) for enhanced oil recovery (EOR) and CO2 storage.
- To investigate ARGS's effect on CO2-oil-water-rock interfacial and mass-transfer properties under saline conditions.
- To evaluate ARGS's potential for simultaneous oil recovery increase and efficient CO2 geological storage.
Main Methods:
- Utilized a natural amphiphilic molecule (ARGS) in CO2 injection processes.
- Assessed ARGS's impact on CO2 solubility, interfacial tension, and wettability under high-salinity conditions.
- Analyzed oil displacement efficiency in micro- and mesopores and CO2 storage mechanisms (dissolved and trapped).
Main Results:
- Achieved a 9.7% increase in oil recovery compared to conventional CO2-EOR, with up to 85% CO2 storage ratio.
- ARGS increased CO2 solubility by 4-fold and reduced CO2-formation water interfacial tension by 36% in high-salinity water.
- Shifted pore-surface wettability to water-wet, increasing oil displacement efficiency by 10%-15% and CO2 flow resistance.
Conclusions:
- ARGS effectively enhances both oil recovery and CO2 geological storage in low-permeability reservoirs.
- ARGS improves CO2 solubility and wettability, promoting dissolved CO2 storage (up to 70%) and trapped CO2.
- Presents an environmentally friendly approach for efficient CO2 utilization and storage in challenging geological formations.
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