Gas mass transfer to AOT-based microemulsions

Chemical Engineering Science - Tập 61 - Trang 2330-2338 - 2006
Diego Gómez-Díaz1, Juan C. Mejuto2, José M. Navaza1
1Department of Chemical Engineering, ETSE, University of Santiago de Compostela, St. Lope Gómez de Marzoa s/n, E-15782, Santiago de Compostela, A Coruña, Spain
2Department of Physical Chemistry, Faculty of Sciences, University of Vigo, Campus das Lagoas, E-32004 Ourense, Ourense, Spain

Tài liệu tham khảo

Álvarez, 1998, Effects of temperature on the conductivity of sodium bis(2-ethylhexyl)sulfosuccinate + 2,2,4-trimethylpentane + water microemulsions in the presence of ureas and thioureas, Journal of Chemical & Engineering Data, 43, 123, 10.1021/je970104y Álvarez, 1999, Effects of temperature on the conductivity of sodium bis(2-ethylhexyl)sulfosuccinate + 2,2,4-trymethylpentane + water microemulsions. Influence of amides and ethylene glycol, Journal of Chemical & Engineering Data, 44, 484, 10.1021/je980129c Álvarez, 1999, Effects of temperature on the conductivity of microemulsions: influence of sodium hydroxide and hydrochloric acid, Journal of Chemical & Engineering Data, 44, 846, 10.1021/je990026+ Álvarez, 1999, Effects of temperature on the conductivity of AOT/isooctane/water microemulsions Influence of salts, Journal of Chemical & Engineering Data, 44, 850, 10.1021/je9900575 Álvarez, 2000, Conductivity of sodium bis(2-ethylhexyl)sulfosuccinate/isooctane/water microemulsions containing phase-transfer catalysts, Journal of Chemical & Engineering Data, 45, 428, 10.1021/je990266p Álvarez, E., Sanjurjo, B., Cancela, A., Navaza, J.M., 2000b. Mass transfer and influence of physical properties of solutions in a bubble column. Chemical Engineering Research & Design 78, 889–893. Álvarez, 2001, Conductivity of sodium bis(2-ethylhexyl)sullfosuccinate/isooctane/water microemulsions containing phase-transfer catalysts. Part 2, Journal of Chemical & Engineering Data, 46, 526, 10.1021/je000124r Atik, 1981, Transport of photo-produced ions in water in oil microemulsions: movements of ions from ions from one water pool to another, Journal of American Chemical Society, 103, 3543, 10.1021/ja00402a048 Berg, 1987, Quantitative characterization of the viscosity of a microemulsion, Journal of Chemical Physics, 87, 3687, 10.1063/1.453715 Chachaty, 1987, Application of NMR methods to the physical chemistry of micellar solutions, Progress in NMR Spectroscopy, 19, 183, 10.1016/0079-6565(87)80002-X Dasilva-Carvalhal, 2003, Influence of crown ethers on the electric percolation of AOT/isooctane/water (w/o) microemulsions, Langmuir, 19, 5975, 10.1021/la026857m Dumont, 2003, Mass transfer enhancement of gas absorption in oil-in-water systems: a review, Chemical Engineering & Processing, 42, 419, 10.1016/S0255-2701(02)00067-3 Eicke, 1976, On the formation of water/oil microemulsions, Helvetia Chimica Acta, 59, 2883, 10.1002/hlca.19760590825 García-Río, 1997, Kinetic studies on the acid and alkaline hydrolysis of N-methyl-N-nitroso-p-toluensulfonamide in dioctadecyldimethylammonium chloride vesicles, Langmuir, 13, 6633, 10.1021/la9705975 García-Río, 2000, Effect of alkylamines on the percolation phenomena in water/AOT/isooctane microemulsions, Journal Colloid & Interface Science, 225, 259, 10.1006/jcis.2000.6771 García-Río, 2000, Reactivity in water/oil microemulsions. Influence of bis(2-ethylhexyl)sulfosuccinate/isooctane/water microemulsions on the solvolysis mechanism of substituted benzoyl chlorides, Journal of the American Chemical Society, 122, 10325, 10.1021/ja001477d García-Río, 2003, Pseudophase approach to reactivity in microemulsions: quantitative explanation of the kinetics of the nitroso group transfer reactions between N-methyl-N-nitroso-p-toluensulfonamide and secondary alkylamines in water/AOT/isooctane microemulsions, Industrial & Engineering Chemistry Research, 42, 5450, 10.1021/ie0208523 García-Río, 2003, Solvolysis of benzoyl halides in AOT/isooctane/water microemulsions. Influence of the leaving group, Langmuir, 19, 3190, 10.1021/la026753b García-Río, 2005, Microheterogeneous solvation for aminolysis reactions in AOT-based water-in-oil microemulsions, Chemistry—A European Journal, 11, 4361, 10.1002/chem.200401067 Gómez-Díaz, 2003, Effect of ethylene glycol on the CO2/water gas–liquid mass transfer process, Chemical Engineering & Technology, 26, 75, 10.1002/ceat.200390010 Gómez-Díaz, 2004, Analysis of carbon dioxide gas/liquid mass transfer in a aerated stirred vessel using non Newtonian media, Journal of Chemical Technology & Biotechnology, 79, 1105, 10.1002/jctb.1092 Grund, 1992, Gas–liquid mass transfer in a bubble column with organic liquids, Chemical Engineering Science, 47, 3509, 10.1016/0009-2509(92)85064-I Hait, 2002, Refined method of assessment of parameter of micellization of surfactants and percolation of W/O microemulsions, Langmuir, 18, 2471, 10.1021/la0110794 Hait, 2002, Physicochemical studies on microemulsions. 8. The effect of aromatic methoxyhydrotropes on droplet clustering and understanding of the dynamics of conductance percolation in water/oil microemulsion system, Journal of Physical Chemistry B, 206, 12642, 10.1021/jp026702n Hurugen, 1991, Percolation process induced by solubilizing cytochrome in reverse micelles, Langmuir, 7, 243, 10.1021/la00050a007 Jiao, 1998, O2 transfer to pseudoplastic fermentation broths in air-lift reactors with different inner designs, Biotechnology Techniques, 12, 729, 10.1023/A:1008808500344 Jordan, 2001, The gas density effect on mass transfer in bubble columns with organic liquids, Chemical Engineering Science, 56, 6267, 10.1016/S0009-2509(01)00255-X Kim, 1986, Percolation like phenomena in oil-continuous microemulsions, Physical Reviews A, 34, 719, 10.1103/PhysRevA.34.719 Linek, 1976, Study of the mechanism of gas absorption into oil–water emulsions, Chemical Engineering Science, 31, 1037, 10.1016/0009-2509(76)87024-8 Luisi, 1984 Mehrnia, 2004, Influence of top-section design and draft-tube height on the performance of airlift bioreactors containing water-in-oil microemulsions, Journal of Chemical Technology & Biotechnology, 79, 260, 10.1002/jctb.971 Mirgorodskaya, 2002, Structure and properties of water–oil microemulsions, Russian Journal of General Chemistry, 72, 1007, 10.1023/A:1020721909581 Mukhopadhyay, 1990, Additive effects on the percolation of water/AOT/decane microemulsions with reference to the mechanism of conduction, Colloids Surfaces, 50, 295, 10.1016/0166-6622(90)80271-5 Peeva, 2001, Mass transfer coefficients of decane to emulsions in a bubble column reactor, Chemical Engineering Science, 56, 5201, 10.1016/S0009-2509(01)00174-9 Pileni, 1989 Pileni, 1989 Ray, 1992, Studies on structure and dynamics of microemulsions. II: viscosity behaviour and water-in-oil microemulsions, Journal of Surface Science & Technology, 8, 191 Schuebel, 1998, A Shear-induced viscoelastic system through addition of a crown-ether to AOT w/o-microemulsions, Colloid & Polymer Science, 276, 743, 10.1007/s003960050305 Vázquez, 2000, Determination of interfacial areas in a bubble column by different chemical methods, Industrial & Engineering Chemistry Research, 39, 2541, 10.1021/ie990467m Zana, 1987