Improving ASP Performance in Carbonate Reservoir Rocks Using Hybrid-Alkali
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G. Pope | Christopher Britton | P. J. Liyanage | Pearson Suniga | R. Fortenberry | K. A. Upamali | Sunghyun Jang | M. T. Al-Murayri | D. Kamal
[1] H. Sharma. Study of geochemical interactions during chemical EOR processes , 2016 .
[2] G. Pope,et al. Ammonia-based ASP floods in carbonate cores containing gypsum , 2016 .
[3] Clarence A. Miller,et al. Determination of the Active Soap Number of Crude Oil and Soap Partitioning Behavior , 2016 .
[4] Gary A. Pope,et al. Design and Demonstration of New Single-Well Tracer Test for Viscous Chemical Enhanced-Oil-Recovery Fluids , 2016 .
[5] A. Kovscek,et al. Understanding the role of brine ionic composition on oil recovery by assessment of wettability from colloidal forces. , 2016, Advances in colloid and interface science.
[6] G. Pope,et al. New Surfactants and Co-Solvents Increase Oil Recovery and Reduce Cost , 2016 .
[7] G. Pope,et al. A Systematic Method for Reducing Surfactant Retention to Extremely Low Levels , 2016 .
[8] G. Pope,et al. Measurement of Microemulsion Viscosity and Its Implications for Chemical EOR , 2016 .
[9] D. Levitt,et al. Adsorption of EOR Chemicals Under Laboratory and Reservoir Conditions, Part III: Chemical Treatment Methods , 2016 .
[10] G. Pope,et al. Co-solvent Partitioning and Retention , 2016 .
[11] M. Jackson,et al. Zeta potential of intact natural limestone: Impact of potential-determining ions Ca, Mg and SO4 , 2016 .
[12] G. Pope,et al. EOR Pilot Design Through an Integrated Laboratory Evaluation and Reservoir Modeling Study for a Large Carbonate Field in Kuwait , 2015 .
[13] R. Taherian,et al. Effect of Ca2+, Mg2+ and SO42− ions on the zeta potential of calcite and dolomite particles aged with stearic acid , 2015 .
[14] Do Hoon Kim,et al. Restoration of Reservoir Cores to Reservoir Condition before Chemical Flooding Tests , 2014 .
[15] Gary A. Pope,et al. One-Spot Pilot Results in the Sabriyah-Mauddud Carbonate Formation in Kuwait Using a Novel Surfactant Formulation , 2014 .
[16] Mahdi Kazempour,et al. Mitigation of anhydrite dissolution in alkaline floods through injection of conditioned water , 2013 .
[17] P. Moreau,et al. Recent Progress in Surfactant Flooding in Carbonate Reservoirs , 2013 .
[18] S. Jouenne,et al. Overcoming Design Challenges of Chemical EOR in High-Temperature, High Salinity Carbonates , 2013 .
[19] David L. Parkhurst,et al. Description of input and examples for PHREEQC version 3: a computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations , 2013 .
[20] Do Hoon Kim,et al. Low-Cost, High-Performance Chemicals for Enhanced Oil Recovery , 2010 .
[21] Clarence A. Miller,et al. Recent Advances in Surfactant EOR , 2011 .
[22] G. Pope,et al. Identification and Evaluation of High-Performance EOR Surfactants , 2009 .
[23] F.H. Wang. Effects of reservoir anaerobic, reducing conditions on surfactant retention in chemical flooding , 1993 .
[24] Vernon H. Schievelbein,et al. Surfactant Flooding Carbonate Reservoirs , 1987 .
[25] J. Southwick. Solubility of silica in alkaline solutions: Implications for alkaline flooding , 1985 .
[26] E. H. Mayer,et al. Scale Formation During Alkaline Flooding , 1984 .
[27] G. L. Stegemeier,et al. Cosurfactant-Enhanced Alkaline Flooding , 1984 .
[28] R. Ehrlich,et al. Interrelation of Crude Oil and Rock Properties With the Recovery of Oil by Caustic Waterflooding , 1977 .