New surfactant developments for chemical enhanced oil recovery

Journal of Petroleum Science and Engineering - Tập 120 - Trang 94-101 - 2014
Jun Lu1, Pathma Jith Liyanage1, Sriram Solairaj1, Stephanie Adkins1, Gayani Pinnawala Arachchilage1, Do Hoon Kim2, Christopher Britton2, Upali Weerasooriya1, Gary A. Pope2
1Department of Petroleum and Geosystems Engineering, The University of Texas at Austin, Austin, TX 78712, USA
2Department of Petroleum and Geosystems Engineering, The University of Texas at Austin, Austin, TX 78712 USA

Tài liệu tham khảo

Abe, 1987, Phase behavior of branched tail ethoxylated carboxylate surfactant/electrolyte/alkane systems, J. Dispers. Sci. Technol., 8, 157, 10.1080/01932698708943599 Adkins, S., Arachchilage, G.P., Solairaj, S., Lu, J., Weerasooriya, U., Pope, G.A., 2012. Development of Thermally and Chemically Stable Large-Hydrophobe Alkoxy Carboxylate Surfactants, SPE 154256 Presented at SPE IOR Symposium. Tulsa, OK. Adkins, S., Liyanage, P.J., Arachchilage, G.W.P., Mudiyanselage, T., Weerasooriya, U., Pope, G.A., 2010. A New Process for Manufacturing and Stabilizing High-Performance EOR Surfactants at Low Cost for High-Temperature, High-Salinity Oil Reservoirs, SPE 129923 Presented at SPE IOR Symposium. Tulsa, OK. Anton, 2008, Practical surfactant mixing rules based on the attainment of microemulsion-oil-water three-phase behavior systems, Adv. Polym. Sci., 218, 83, 10.1007/12_2008_163 Aoudia, 1995, Optimum microemulsions formulated with propoxylated guerbet alcohol and propoxylated tridecyl alcohol sodium sulfates, J. Dispers. Sci. Technol., 16, 115, 10.1080/01932699508943664 Behler, 2001, Industrial surfactant syntheses, 1 Cayias, J.L., Schechter, R.S., Wade, W.H., 1976. Modeling Crude Oils for Low Interfacial Tension, SPE 5813 Presented at SPE-AIME IOR Symposium. Tulsa, OK. DanChem Technologies Inc. 2011. Neodox Alcohol Ethoxycarboxylate, 〈www.danchemtechnology.com/neodox.html〉 (accessed 15.04.11.). Derian, 1993 Flaaten, A., Nguyen, Q., Pope, G.A., Zhang, J., 2008. A Systematic Laboratory Approach to Low-Cost, High-Performance Chemical Flooding. Paper SPE 113469-PA Presented at the SPE Improved Oil Recovery Symposium. Tulsa, Oklahoma, 19–23 April. Gubelmann-Bonneau, 1995 Jang, S.H., Liyanage, P.J., Lu, J., Kim, D.H., Arachchilage, G.W.P.P., Britton, C., Weerasooriya, U., Pope, G.A., 2014. Microemulsion Phase Behavior Measurements Using Live Oils at High Temperature and Pressure, SPE 169169 Presented at SPE IOR Symposium. Tulsa, OK. Levitt, D.B., Jackson, A.C., Heinsen, C. Britton, L.N., Malik, T., Dwarakanath, V., Pope, G.A., 2006. Identification and Evaluation of High-Performance EOR Surfactants, SPE 100089, SPE/DOE Symposium. Tulsa, OK. Li, 2000, What is the criterion for selecting alkaline/surfactant/polymer flooding formulation: phase behavior or interfacial tension, J. Dispers. Sci. Technol., 21, 305, 10.1080/01932690008913268 Li, 2005, Design and application of an alkaline-surfactant-polymer flooding system in field pilot test, J. Dispers. Sci. Technol., 26, 709, 10.1081/DIS-200063021 Liyanage, P.J., Solairaj, S., Arachchilage, G.W., Linnemeyer, H.C., Kim, D., Weerasooriya, U., Pope, G.A., 2012. Alkaline Surfactant Polymer Flooding using a Novel Class of Large Hydrophobe Surfactants, Paper SPE 154274 Presented at the SPE Improved Recovery Symposium. Tulsa, Oklahoma. Lu, 2014, Novel large-hydrophobe alkoxy carboxylate surfactants for enhanced oil recovery, SPE J., 10.2118/154261-PA O׳Lenick, 1996, Effects of branching upon some surfactant properties of sulfated alcohols, J. Am. Oil Chem. Soc., 73, 935, 10.1007/BF02517998 O׳Lenick, 2001, Guerbet chemistry, J. Surfactants Deterg., 4, 311, 10.1007/s11743-001-0185-1 Puerto, M., Hirasaki, G.J., Miller, C.A., Barnes, J.R., 2010. Surfactant Systems for EOR in High-Temperature, High-Salinity Environments, SPE 129675 Presented at SPE IOR Symposium. Tulsa, OK. Rosen, 2004 Roshanfekr, 2012, Simulation of the effect of pressure and solution gas on oil recovery from surfactant/polymer floods, SPE J., 17, 705, 10.2118/125095-PA Salager, 1979, Mixing rules for optimum phase-behavior formulations of surfactant/oil/water systems, SPE J., 19, 271, 10.2118/7584-PA Sasol. 2011. Marlowet Ether Carboxylic Acids, 〈www.innovadex.eu/Lubricants/Detail/3857/110895/Marlowet--Ether-Carboxylic-Acids〉 (accessed 15.04.11.). Shaw, 1984, Carboxylate surfactant systems exhibiting phase behavior suitable for enhanced oil recovery, J. Am. Oil Chem. Soc., 61, 1395, 10.1007/BF02542250 Solairaj, S., Britton, C., Kim, D.H., Weerasooriya, U., Pope, G.A., 2012b. Measurement and Analysis of Surfactant Retention, SPE 154247 Presented at SPE IOR Symposium. Tulsa, OK. Solairaj, S., Britton, C., Lu, J., Kim, D.H., Weerasooriya, U., Pope, G.A., 2012a. New Correlation to Predict the Optimum Surfactant Structure for EOR, SPE 154262 Presented at SPE IOR Symposium, Tulsa, OK. Talley, 1988, Hydrolytic stability of alkylethoxy sulfates, SPE Reserv. Eng., 3, 235, 10.2118/14912-PA Varadaraj, 1991, Fundamental interfacial properties of alkyl-branched sulfate and ethoxy sulfate surfactants derived from Guerbet alcohols. 1. Surface and instantaneous interfacial tensions, J. Phys. Chem., 95, 1671, 10.1021/j100157a033