A review of fluid displacement mechanisms in surfactant-based chemical enhanced oil recovery processes: Analyses of key influencing factors
Обзор механизмов вытеснения флюидов в процессах химического повышения нефтеотдачи на основе поверхностно-активных веществ: анализ ключевых влияющих факторов
2021-11-26
SCID: 54.1/sbexj8z2
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alkaline-surfactant-polymer floodinginterfacial tension reductionsurfactant floodingsurfactant-based chemical enhanced oil recoverywettability alteration
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Abstract (AI)
Surfactant-based oil recovery processes are employed to lower the interfacial tension in immiscible displacement processes, change the wettability of rock to a more water-wet system and emulsify the oil to displace it in subsurface porous media. Furthermore, these phenomena can reduce the capillary pressure and enhance spontaneous imbibition. The key factors affecting such immiscible displacement process are temperature, salinity and pH of the fluids, surfactant concentration and adsorption. Therefore, before any surfactant flooding process is applied, extensive studies of fluid-fluid and rock-fluid interactions are needed. The use of other chemicals along with surfactants in chemical enhanced oil recovery (cEOR) processes have been widely considered to exploit the synergy of individual chemicals and complement the weakness arises from each of them during immiscible displacement of fluids in porous media. Therefore, such combinations of chemicals lead to alkaline-surfactant (AS), surfactant-polymer (SP), alkaline-surfactant-polymer (ASP), and nanoparticle-surfactant (NS) flooding processes, among others. In this review study, we categorised the role and displacement mechanisms of surfactants and discussed the key factors to be considered for analysing the fluid displacement in porous media.
Key Findings
1
Combining surfactants with alkaline agents, polymers, or nanoparticles creates synergistic AS, SP, ASP, and NS flooding processes that can address individual chemical limitations.
2
Fluid displacement performance is strongly influenced by temperature, salinity, pH, surfactant concentration, and surfactant adsorption.
3
Successful surfactant flooding requires prior investigation of fluid–fluid and rock–fluid interactions under reservoir-relevant conditions.
4
Surfactants enhance oil recovery by lowering interfacial tension, altering rock wettability toward water-wet conditions, and emulsifying oil during immiscible displacement.
5
These surfactant-induced effects reduce capillary pressure and promote spontaneous imbibition in subsurface porous media.
Research Object
Surfactant-based chemical enhanced oil recovery processes for immiscible fluid displacement in subsurface porous media
Research Subject
Fluid displacement mechanisms and their governing factors, including interfacial tension reduction, wettability alteration, emulsification, spontaneous imbibition, temperature, salinity, pH, surfactant concentration, adsorption, and chemical synergy
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2021-11-26
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