Kinetics of the catalytic thermo-oxidation of asphaltenes at isothermal conditions on different metal oxide nanoparticle surfaces
暂无分享,去创建一个
German Luna | Pedro Pereira-Almao | Nashaat N. Nassar | N. Nassar | Azfar Hassan | G. Luna | P. Pereira-Almao | Azfar Hassan
[1] A. Marczewski,et al. Adsorption of asphaltenes from toluene on mineral surface , 2002 .
[2] M. V. Kok,et al. Kinetic analysis of in situ combustion processes with thermogravimetric and differential thermogravimetric analysis and reaction tube experiments , 1995 .
[3] H. Yarranton,et al. Adsorption of Asphaltenes on Metals , 2005 .
[4] Alan K. Burnham,et al. ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data , 2011 .
[5] J. G. Weissman. Review of processes for downhole catalytic upgrading of heavy crude oil , 1997 .
[6] J. L. McAtee,et al. Asphaltene adsorption on clay , 1986 .
[7] N. Nassar,et al. Effect of the Particle Size on Asphaltene Adsorption and Catalytic Oxidation onto Alumina Particles , 2011 .
[8] N. Nassar,et al. Iron oxide nanoparticles for rapid adsorption and enhanced catalytic oxidation of thermally cracked asphaltenes , 2012 .
[9] J. Bantignies,et al. Asphaltene adsorption on kaolinite characterized by infrared and X-ray absorption spectroscopies , 1998 .
[10] N. Nassar,et al. Application of Nanotechnology for Heavy Oil Upgrading: Catalytic Steam Gasification/Cracking of Asphaltenes , 2011 .
[11] N. Nassar,et al. Comparative oxidation of adsorbed asphaltenes onto transition metal oxide nanoparticles , 2011 .
[12] N. Nassar,et al. Effect of surface acidity and basicity of aluminas on asphaltene adsorption and oxidation. , 2011, Journal of colloid and interface science.
[13] P. R. Pereira Almao,et al. In situ upgrading of bitumen and heavy oils via nanocatalysis , 2012 .
[14] B. Maini,et al. Experimental Study on Transport of Ultra-Dispersed Catalyst Particles in Porous Media , 2010 .
[15] I. Agency,et al. World Energy Outlook 2000 , 2000 .
[16] B. Maini,et al. Flow of nanodispersed catalyst particles through porous media: Effect of permeability and temperature , 2012 .
[17] N. Nassar,et al. Metal Oxide Nanoparticles for Asphaltene Adsorption and Oxidation , 2011 .
[18] Sócrates Acevedo,et al. Adsorption of asphaltenes and resins on organic and inorganic substrates and their correlation with precipitation problems in production well tubing , 1995 .
[19] N. Nassar,et al. Thermogravimetric studies on catalytic effect of metal oxide nanoparticles on asphaltene pyrolysis under inert conditions , 2012, Journal of Thermal Analysis and Calorimetry.
[20] I. Dékány,et al. Sorption and elution of asphaltenes from porous silica surfaces , 2001 .
[21] M. Thring. World Energy Outlook , 1977 .
[22] P. Pereira-Almao,et al. Hydrocracking of Athabasca Bitumen Using Submicronic Multimetallic Catalysts at Near In-Reservoir Conditions , 2010 .
[23] N. Nassar. Asphaltene Adsorption onto Alumina Nanoparticles: Kinetics and Thermodynamic Studies , 2010 .
[24] J. G. Weissman,et al. Downhole heavy crude oil hydroprocessing , 1996 .
[25] Roger M. Butler,et al. The Production Of Conventional Heavy Oil Reservoirs With Bottom Water Using Steam-Assisted Gravity Drainage , 1990 .
[26] A. Moore,et al. Down-Hole Catalytic Upgrading of Heavy Crude Oil , 1996 .
[27] H. Yarranton,et al. Asphaltene self-association and water-in-hydrocarbon emulsions. , 2003, Journal of colloid and interface science.
[28] Avinash Kumar Agarwal,et al. Biofuels (alcohols and biodiesel) applications as fuels for internal combustion engines , 2007 .
[29] N. Nassar,et al. Transport Behavior of Multimetallic Ultradispersed Nanoparticles in an Oil-Sands-Packed Bed Column at a High Temperature and Pressure , 2012 .
[30] R. Butler. Thermal Recovery of Oil and Bitumen , 1991 .