Theoretical Prediction of Gas-Liquid Mass Transfer Coefficient, Specific Area and Hold-Up in Sparged Stirred Tanks
暂无分享,去创建一个
[1] K. Riet,et al. Review of Measuring Methods and Results in Nonviscous Gas-Liquid Mass Transfer in Stirred Vessels , 1979 .
[2] Malcolm Greaves,et al. Gas holdup and interfacial area distributions in a mechanically agitated gas-liquid contactor , 1996 .
[3] R. Higbie,et al. The Rate of Absorption of a Pure Gas into a Still Liquid during Short Periods of Exposure , 1935 .
[4] P. V. Danckwerts. Significance of Liquid-Film Coefficients in Gas Absorption , 1951 .
[5] J. Villadsen,et al. A novel technique based on 85Kr for quantification of gas—liquid mass transfer in bioreactors , 1994 .
[6] Reinhard Billet,et al. Predicting mass transfer in packed columns , 1993 .
[7] G. B. Wills,et al. Mass Transfer in an Agitated Vessel , 1973 .
[8] Fumitake Yoshida,et al. Gas Absorption by Newtonian and Non-Newtonian Fluids in Sparged Agitated Vessels , 1975 .
[9] Sabine E. Apitz,et al. Hydrodynamics and mass transfer prediction in a three-phase airlift reactor for marine sediment biotreatment , 1999 .
[10] T. W. F. Russell,et al. The design of gas sparged devices for viscous liquid systems , 1978 .
[11] P. Calderbank,et al. Further observations on the scale-up of aerated mixing vessels , 1981 .
[12] Václav Linek,et al. Gas-liquid mass transfer in vessels stirred with multiple impellers—I. Gas-liquid mass transfer characteristics in individual stages , 1996 .
[13] V. Linek,et al. Critical assessment of gassing‐in methods for measuring kla in fermentors , 1991, Biotechnology and bioengineering.
[14] Gogate,et al. Multiple-impeller systems with a special emphasis on bioreactors: a critical review. , 2000, Biochemical engineering journal.
[15] Donald Nelson Miller,et al. Scale‐up of agitated vessels gas‐liquid mass transfer , 1974 .
[16] Y. Kawase,et al. Gas—liquid mass transfer in external-loop airlift columns with newtonian and non-newtonian fluids , 1996 .
[17] J. M. Marchello,et al. Film-penetration model for mass and heat transfer , 1958 .
[18] S. S. Alves,et al. Effect of blade shape on the performance of six-bladed disk turbine impellers , 2000 .
[19] G. Baldi,et al. Sparged vessels agitated by multiple turbines , 1988 .
[20] Yoshinori Kawase,et al. Theoretical prediction of volumetric mass transfer coefficients in bubble columns for Newtonian and non-Newtonian fluids , 1987 .
[21] EDDY NUMBER DISTRIBUTION IN ISOTROPIC TURBULENCE AND ITS APPLICATION FOR ESTIMATING MASS TRANSFER COEFFICIENTS , 1995 .
[22] K. Hashimoto,et al. GAS ABSORPTION IN AERATED MIXING VESSELS , 1981 .
[23] S. J. Arjunwadkar,et al. Gas-liquid mass transfer in dual impeller bioreactor , 1998 .
[24] F. Kudrewizki,et al. Model of the dissipation of mechanical energy in gassed stirred tanks , 1986 .
[25] Donald S. Scott,et al. An eddy cell model of mass transfer into the surface of a turbulent liquid , 1970 .
[26] S. A. Miller,et al. Power requirements of gas‐liquid agitated systems , 1962 .
[27] Aniruddha B. Pandit,et al. Mechanically agitated gas-liquid reactors , 1982 .
[28] F. García-Ochoa,et al. Estimation of oxygen mass transfer coefficient in stirred tank reactors using artificial neural networks. , 2001, Enzyme and microbial technology.
[29] M. Moo-young,et al. Liquid‐Phase mass transfer coefficients in bioreactors , 1992, Biotechnology and bioengineering.
[30] Graeme J. Jameson,et al. Bubble breakup in stirred vessels : predicting the sauter mean diameter , 1991 .
[31] Yoshinori Kawase,et al. Volumetric mass transfer coefficients in aerated stirred tank reactors with Newtonian and non-Newtonian media , 1988 .
[32] O. C. Sandall,et al. Gas absorption by non‐Newtonian fluids in agitated vessels , 1974 .
[33] Gordon A. Hughmark,et al. Power Requirements and Interfacial Area in Gas-Liquid Turbine Agitated Systems , 1980 .
[34] E.Garcia Calvo,et al. A fluid dynamic model for airlift loop reactors , 1989 .
[35] N. Midoux,et al. Some hydrodynamics and power input data in mechanically agitated gas‐liquid contactors , 1977 .
[36] M. Nocentini,et al. Gas-liquid mass transfer and holdup in vessels stirred with multiple Rushton turbines: water and water-glycerol solutions , 1993 .
[37] F. García-Ochoa,et al. Mass transfer coefficient in stirred tank reactors for xanthan gum solutions , 1998 .
[38] P. Beneš,et al. A critical review and experimental verification of the correct use of the dynamic method for the determination of oxygen transfer in aerated agitated vessels to water, electrolyte solutions and viscous liquids , 1987 .
[39] M. Figueiredo,et al. The scale-up of aerated mixing vessels for specified oxygen dissolution rates , 1979 .
[40] Jules Thibault,et al. Power consumption and mass transfer in agitated gas‐liquid columns: A comparative study , 1998 .
[41] Irving J. Dunn,et al. Design and characterization of a multistage, mechanically stirred column absorber , 1979 .
[42] A. I. Johnson,et al. Mass transfer studies in an agitated vessel , 1956 .
[43] P. Gogate,et al. Survey of measurement techniques for gas–liquid mass transfer coefficient in bioreactors , 1999 .