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Nurudeen Yekeen,Eswaran Padmanabhan,Thenesh A/L Sevoo,Kamalarasan A/L Kanesen,Oluwagade Adenike Okunade 한국공업화학회 2020 Journal of Industrial and Engineering Chemistry Vol.88 No.-
Carbondioxide injection into geological formations is a promising method of optimizing hydrocarbonrecovery, as well as improving CO2 geo-storage security. However, the success of CO2-enhancedhydrocarbon recovery and CO2 geo-storage projects is determined by the wettability of rock/CO2/brinesystems. A critical review of the existing literature that discussed the wettability alteration ofconventional and unconventional reservoir rocks (carbonate, sandstone and shale), as well as theirrepresentative pure minerals (calcite, quartz and mica), on interaction with CO2-water/brine system wasconducted in this study. Wettability influencing parameters and recent advances in wettabilitymodification by nanofluids/nano-surfactants were extensively discussed. Knowledge gaps wereidentified and direction for future studies were suggested.
A review of recent advances in foam-based fracturing fluid application in unconventional reservoirs
Nurudeen Yekeen,Eswaran Padmanabhan,Ahmad Kamal Idris 한국공업화학회 2018 Journal of Industrial and Engineering Chemistry Vol.66 No.-
Foam-based fracturing fluid application in unconventional reservoirs has recently attracted prodigious attention, due to their high apparent viscosity and ultra-low water contents, which enhanced their potential applications as proppants carrier fluids in water sensitive formations. A comprehensive review of existing literature on the applications and recent advancement of foam fracturing fluid is conducted in this study. Results of experimental studies, simulations predictions and field applications were extensively discussed. Challenges and knowledge gaps were identified and directions for future studies were suggested. The review literature suggested that stable foam fracturing fluids can increase the productivity of the fractured wells.
Recent advances and prospects in polymeric nanofluids application for enhanced oil recovery
Afeez O. Gbadamosi,Radzuan Junin,Muhammad A. Manan,Nurudeen Yekeen,Augustine Agi,Jeffrey O. Oseh 한국공업화학회 2018 Journal of Industrial and Engineering Chemistry Vol.66 No.-
Enhanced-oil-recovery (EOR) processes are used to recover bypassed and residual oil trapped in the reservoir after primary and secondary recovery methods. Recently, novel materials formed from incorporation of polymer and nanoparticles have gained attention and are proposed for EOR applications due to their fascinating properties. Herein, we review the recent advances and prospects of the application these polymeric nanofluids in crucial aspects of EOR such as stability and adsorption, wettability alteration, interfacial tension reduction and emulsion stability, and rheology. The mechanisms of their improved efficiency were elucidated, gaps in the research were highlighted, and recommendation for future works were outlined.