A review of recent developments in CO2 mobility control in enhanced oil recovery
Обзор последних разработок в области управления подвижностью CO2 при увеличении нефтеотдачи
2021-05-15
SCID: 54.1/b9nkpc4z
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CO2 foam injectionCO2 mobility controlCO2-enhanced oil recoveryNanoparticle-assisted CO2 floodingWater-alternating-gas injection
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Abstract (AI)
Carbon dioxide-enhanced oil recovery (CO2-EOR) has gained widespread attention in light of the declining conventional oil reserves. Moreover, CO2-EOR contributes to the reduction of the global emissions of greenhouse gases through CO2 sequestration in subsurface geologic formations. This method has been largely used in the petroleum industry for several decades especially for extracting oil from light-to-medium oil reservoirs approaching an advanced state of maturity. Traditionally, CO2 is used in a continuous flooding scheme for EOR. However, continuous CO2 flooding tends to be problematic due to unfavorable mobility, viscous fingering/channeling and early breakthrough of CO2, especially in the presence of reservoir heterogeneities. In this paper, recent developments in the methods used to overcome these problems are reviewed. These developments include CO2water-alternating-gas (WAG) injection, polymer-assisted CO2 injection, surfactant-assisted CO2 mobility control (CO2-foam injection), and nanoparticle-assisted CO2 flooding. Each method addresses, to an extent, one or more of the problems associated with conventional CO2 flooding. Furthermore, incorporating more than one method can provide better performance in terms of CO2 mobility control and oil recovery. In comparison with CO2-WAG and CO2-foam injection methods, the use of polymers and nanoparticles with CO2 flooding is relatively new. These two new methods were mostly investigated experimentally, at the laboratory level, and they still need further development prior to field implementation.
Key Findings
1
CO2-EOR can support greenhouse-gas reduction by sequestering CO2 in subsurface geological formations, while recovering oil from mature light-to-medium oil reservoirs.
2
Continuous CO2 flooding in EOR is hindered by unfavorable mobility, viscous fingering, channeling, and premature CO2 breakthrough, particularly in heterogeneous reservoirs.
3
Each reviewed method mitigates one or more limitations of conventional CO2 flooding, while combining methods may further improve CO2 mobility control and oil recovery.
4
Polymer- and nanoparticle-assisted CO2 flooding are newer approaches studied mainly at laboratory scale and require further development before field implementation.
5
Recent mobility-control approaches include CO2 water-alternating-gas injection, polymer-assisted CO2 flooding, surfactant-assisted CO2-foam injection, and nanoparticle-assisted CO2 flooding.
Research Object
CO2 flooding in enhanced oil recovery from mature light-to-medium oil reservoirs
Research Subject
Methods for controlling CO2 mobility and their effects on CO2 breakthrough and oil recovery
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2021-05-15
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