Open Access
Numéro
Oil & Gas Science and Technology - Rev. IFP
Volume 61, Numéro 3, May-June 2006
Dossier: Petroleum Industry Applications of Thermodynamics
Page(s) 443 - 458
DOI https://doi.org/10.2516/ogst:2006044a
Publié en ligne 1 janvier 2007
  • Baird, M.H. and Rice, R.G. (1975) Axial Dispersion in Large Unbaffled Columns. Chem. Eng. J., 9, 171-174. [CrossRef] [Google Scholar]
  • Berg, S. and Schlüter, S. (1995) Rückvermischung in blasensäulen mit einbauten. Chem. Ing. Tech., 67, 3, 289-299. [CrossRef] [Google Scholar]
  • Bernemann, K. (1989) Zur fluiddynamik und zum vermischungsverhalten der flüssigen phase in blasensäulen mit längsangeströmten rohrbündeln (Hydrodynamics of the Liquid Phase in Bubble Columns with internals). Dissertation, Universität Dortmund. [Google Scholar]
  • Bukur, D.B.,Patel, S.A. and Matheo, R. (1987) Hydrodynamic Studies in Fischer-Tropsch Derived Waxes in a Bubble Column. Chem. Eng. Comm., 60, 63-78. [CrossRef] [Google Scholar]
  • Deckwer, W.D.,Louisi, Y.,Zaidi, A. and Ralek, M. (1980) Hydrodynamic Properties of the Fischer-Tropsch Slurry Process. Ind. Eng. Chem. Proc. Des. Dev., 19, 699-708. [CrossRef] [Google Scholar]
  • Degaleesan, S.,Dudukovic, M.P.,Toseland, B.A. and Bhatt, B.L. (1997) A Two-Compartment Convective-Diffusion Model for Slurry Bubble Column Reactors. Ind. Eng. Chem. Res., 36, 4670–4680. [CrossRef] [Google Scholar]
  • Devanathan, N. (1991) Investigation of Liquid Hydrodynamics in Bubble Columns via a Computer Automated Radioactive Particle Tracking (CARPT). Ph.D. Thesis, Washington University, Saint Louis, Missouri, USA. [Google Scholar]
  • Fischer, F. and Tropsch, H. (1921) Synthesis of Methanol from CO and H2. French Patent 540, 543. [Google Scholar]
  • Forret, A.,Schweitzer, J.M.,Gauthier, T.,Krishna, R. and Schweich, D. (2003) Influence of Scale on the Hydrodynamics of Bubble Column Reactors: An Experimental Study in Columns of 0.1, 0.4 and 1 m Diameters. Chem. Eng. Sci., 58, 719-724. [CrossRef] [Google Scholar]
  • Geary, N.W. and Rice, R.G. (1992) Circulation and Scale-Up in Bubble Columns. AIChE J., 38, 1, 76-82. [CrossRef] [Google Scholar]
  • Hills, J.H. (1974) Radial Non-Uniformity of Velocity and Voidage in a Bubble Column. Trans. Inst. Chem. Eng., 52, 1-9. [Google Scholar]
  • Joshi, J.B., ParasuVeera, U.,Prasad, Ch.V.,Phanikumar, D.V.,Deshphande, N.S.,Thakre, S.S. and Thorat, B.N. (1998) Gas Hold-Up Structure in Bubble Column Reactors. PINSA Review article, 64, A, 4, 441-567. [Google Scholar]
  • Joshi, J.B. (2001) Computational Flow Modelling and Design of Bubble Column Reactors. Chem. Eng. Sci., 56, 5893-5933. [CrossRef] [Google Scholar]
  • Kawase, Y. and Moo-Young, M. (1989) Turbulence Intensity in Bubble Columns. Chem. Eng. J., 40, 1, 55-58. [CrossRef] [MathSciNet] [Google Scholar]
  • Kojima, E.,Unno, H.,Sato, Y.,Chida, T.,Imai, H.,Endo, K.,Inoue, I.,Kobayashi, J.,Kaji, H.,Nakanishi, H. and Yamamoto, K. (1980) Liquid Phase Velocity in a 5.5 m Diameter Bubble Column. Journal of Chemical Engineering of Japan, 13, 1, 16-21. [CrossRef] [Google Scholar]
  • Krishna, R. and Ellenberger, J. (1996) Gas Holdup in Bubble Column Reactors Operating in the Churn-Turbulent Regime. AIChE J., 42, 2627-2634. [CrossRef] [Google Scholar]
  • Krishna, R,Ellenberger, J. and Sie, S.T. (1996) Reactor Development for Conversion of Natural Gas to Liquid Fuels: a Scale-Up Strategy Relying on Hydrodynamics Analogies. Chem. Eng. Sci., 51, 5041-2050. [CrossRef] [Google Scholar]
  • Krishna, R.,Urseanu, M.I., Van Baten, J.M. and Ellenberger, J. (1999) Influence of Scale on the Hydrodynamics of Bubble Columns Operating in the Churn-Turbulent Regime: Experiments vs. Eulerian Simulations. Chem. Eng. Sci., 54, 4903-4911. [CrossRef] [Google Scholar]
  • Krishna, R. (2000) A Scale-up Strategy for a Commercial Scale Bubble Column Slurry Reactor for Fischer-Tropsch Synthesis. Oil & Gas Science and Technology – Rev. IFP, 55, 4, 359-393. [CrossRef] [EDP Sciences] [Google Scholar]
  • Krishna R. and Sie. S.T. (2000) Selection, Design and Scale-Up Aspects of Fischer-Tropsch Reactors. Fuel Processing Technology, 64, 73-105. [Google Scholar]
  • Levenspiel, O. and Fitzgerald, T.J. (1983) A Warning on the Misuse of the Dispersion Model. Chem. Eng. Sci., 38, 489. [CrossRef] [Google Scholar]
  • Luo, X.,Lee, D.J.,Lau, R.,Yang, G.Q. and Fan, L.S. (1999) Maximum Stable Bubble Size and Gas Holdup in High-pressure Slurry Bubble Columns. AIChE J., 45, 4, 665-680. [CrossRef] [MathSciNet] [Google Scholar]
  • Miyauchi, T. and Shyu, C.N. (1970) Flow of Fluid in Gas Bubble Columns. Kagaku Kogaku, 34, 958-964. [CrossRef] [Google Scholar]
  • Nottenkämper, R.,Steiff, A. and Weinspach, P.M. (1983) Experimental Investigation of Hydrodynamics of Bubble Columns. Ger. Chem. Eng., 6, 147-155. [Google Scholar]
  • Parasu Veera, U. and Joshi, J.B. (2000) Measurement of Gas Holdup Profiles in Bubble Column by Gamma Ray Tomography, Effect of Liquid Phase Properties. Trans IChemE, 78, Part A, 425-434. [Google Scholar]
  • Patel, S.A.,Daly, J.G. and Bukur, D.B. (1990) Bubble-Size Distribution in Fischer-Tropsch Derived Waxes in Bubble Column. AIChE J., 36, 1, 93-105. [CrossRef] [Google Scholar]
  • Riquarts, H.P. (1981) A Physical Model for Axial Mixing of the Liquid Phase for Heterogeneous Flow Regime in Bubble Columns. German Chemical Engineering, 4, 18-23. [Google Scholar]
  • Schweitzer, J.M.,Bayle, J. and Gauthier, T. (2001) Local Gas Hold-Up Measurements in Fluidized Bed and Slurry Bubble Column. Chem. Eng. Sci., 56, 1103-1110. [CrossRef] [Google Scholar]
  • Shah, Y.T.,Kelkar, B.G.,Godbole, S.P. and Deckwer, W.D. (1982) Design Parameters Estimations for Bubble Column Reactors. AIChE J., 28, 353-379. [CrossRef] [Google Scholar]
  • Towell, G.D. and Ackerman, G.H. (1972) Axial Mixing of Liquid and Gas in Large Bubble Reactors. Proceeding of 2nd International Symposium Chem. React. Eng., Amsterdam, The Netherlands, B3.1-B3.13. [Google Scholar]
  • Ueyama, K. and Miyauchi, T. (1979) Properties of Recirculating Turbulent Two Phase Flow in Gas Bubble Columns. AIChE J., 25, 2, 258-266. [CrossRef] [Google Scholar]
  • Urseanu, M.I. (2000) Scaling Up Bubble Column Reactors. Ph.D. Thesis, University of Amsterdam, The Netherlands. [Google Scholar]
  • Wen, C.Y. and Fan, L.T. (1975) Models for Flow Systems and Chemical Reactors, Dekker, New York. [Google Scholar]
  • Wendt, R.,Steiff, A. and Weinspach, P.M. (1984) Liquid Phase Dispersion in Bubble Columns. Ger. Chem. Eng., 7, 267-273. [Google Scholar]
  • Zehner, P. (1986) Momentum, Mass and Heat Transfer in Bubble Columns, Part 1: Flow Model of the Bubble Column and Liquid Velocities. Int. Chem. Eng., 41, 1969-1977. [CrossRef] [Google Scholar]

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