Wettability alteration of caprock minerals by carbon dioxide
暂无分享,去创建一个
[1] O. Velev,et al. Charging of Oil−Water Interfaces Due to Spontaneous Adsorption of Hydroxyl Ions , 1996, Langmuir.
[2] Donald L. Katz,et al. Threshold pressure phenomena in porous media , 1968 .
[3] Daoyong Yang,et al. Interfacial interactions between reservoir brine and CO2 at high pressures and elevated temperatures , 2005 .
[4] Terence Desmond Blake,et al. Contact-Angle Hysteresis , 1973 .
[5] David Quéré,et al. Gouttes, bulles, perles et ondes , 2005 .
[6] L. Scriven,et al. Hydrodynamic Model of Steady Movement of a Solid / Liquid / Fluid Contact Line , 1971 .
[7] K. Johnston,et al. Wetting phenomena at the CO2/water/glass interface. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[8] Roger Woodward,et al. An evaluation of methods for contact angle measurement. , 2005, Colloids and surfaces. B, Biointerfaces.
[9] J. Israelachvili,et al. Fundamental studies of crude oil-surface water interactions and its relationship to reservoir wettability , 2004 .
[10] S. Basu,et al. Statistical analysis on parameters that affect wetting for the crude oil/brine/mica system , 2002 .
[11] A. Hamouda,et al. The effect of pressure on contact angles and wettability in the mica/water/n-decane system and the calcite+stearic acid/water/n-decane system , 2000 .
[12] Wei-dong Yan,et al. Interfacial Tension of (CO2 + CH4) + Water from 298 K to 373 K and Pressures up to 30 MPa , 2000 .
[13] F. McCaffery. Measurement of Interfacial Tensions And Contact Angles At High Temperature And Pressure , 1972 .
[14] Hans Bruining,et al. Pressure dependence of the contact angle in a CO2-H2O-coal system. , 2006, Journal of colloid and interface science.
[15] A. W. Neumann,et al. On the question of rate-dependence of contact angles , 2006 .
[16] Wei-dong Yan,et al. Interfacial Tension of (Methane + Nitrogen) + Water and (Carbon Dioxide + Nitrogen) + Water Systems , 2001 .
[17] Daniel Y. Kwok,et al. Contact angle measurement and contact angle interpretation , 1999 .
[18] D. Beaglehole,et al. Vapor adsorption on mica and silicon : entropy effects, layering, and surface forces , 1992 .
[19] N. Morrow,et al. Influence of Electrical Surface Charges on the Wetting Properties of Crude Oils , 1989 .
[20] Carlos Drummond,et al. Surface forces and wettability , 2002 .
[21] D. Broseta,et al. CO2/water interfacial tensions under pressure and temperature conditions of CO2 geological storage , 2007 .
[22] R. Massoudi,et al. Effect of pressure on the surface tension of aqueous solutions. Adsorption of hydrocarbon gases, carbon dioxide, and nitrous oxide on aqueous solutions of sodium chloride and tetrabutylammonium bromide at 25.deg. , 1975 .
[23] Mingzhe Dong,et al. CO2 sequestration in depleted oil and gas reservoirs—caprock characterization and storage capacity , 2006 .
[24] P. Zweigel,et al. Towards a methodology for top seal efficacy assessment for underground CO2 storage , 2005 .
[25] Bernhard M. Krooss,et al. Gas breakthrough experiments on pelitic rocks: comparative study with N2, CO2 and CH4 , 2004 .
[26] Jill S. Buckley,et al. Alteration of wetting of mica surfaces , 1999 .
[27] J. Israelachvili. Intermolecular and surface forces , 1985 .
[28] S. Li,et al. Gas breakthrough pressure for hydrocarbon reservoir seal rocks: implications for the security of long‐term CO2 storage in the Weyburn field , 2005 .
[29] R. H. Dettre,et al. Contact Angle Hysteresis: I. Study of an Idealized Rough Surface , 1964 .
[30] W. Zisman,et al. Contact angle, wettability, and adhesion , 1964 .
[31] Nicolaus Dahmen,et al. Interfacial Tension at Elevated PressuresMeasurements and Correlations in the Water + Carbon Dioxide System , 2002 .