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Original Articles

Gas–Liquid and Liquid–Liquid Mass Transfers in Simulated and Actual High Cell Density Fermentations

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References

  • Al-Zuhair, S., Hasan, M., and Ramachandran, K. (2003). Kinetics of the enzymatic hydrolysis of palm oil by lipase, Process Biochem., 38, 1155–1163.
  • Amaral, P. F., Freire, M. G., Rocha‐Leão, M. H. M., Marrucho, I. M., Coutinho, J. A., and Coelho, M. A. Z. (2007). Optimization of oxygen mass transfer in a multiphase bioreactor with perfluorodecalin as a second liquid phase, Biotechnol. Bioeng., 99(3), 588–598.
  • Amaral, P. F. F., Rocha-Leão, M. H. M., Marrucho, I. M., Coutinho, J. A. P., and Coelho M. A. Z. (2006). Improving lipase production using a perfluorocarbon as oxygen carrier, J. Chem. Technol. Biotechnol., 81(8), 1368–1374.
  • Calderbank, P. (1958). Physical rate processes in industrial fermentation. Part I: The interfacial area in gas-liquid contacting with mechanical agitation, Trans. Inst. Chem. Eng., 36, 443–463.
  • Calderbank, P., and Jones, S. (1961). Physical rate processes in industrial fermentation part III: mass transfer from fluids to solid particles suspended in mixing vessels, Trans. Inst. Chem. Eng., 39, 363–368.
  • Calderbank, P., and Moo-Young, M. (1959). The prediction of power consumption in the agitation of non-Newtonian fluids, Trans. Inst. Chem. Eng., 37, 26–33.
  • Dutta, R. (2008). Fundamentals of Biochemical Engineering. Springer-Verlag Berlin Heidelberg, New York, NY. pp. 247.
  • Elibol, M., and Ozer, D. (2000). Influence of oxygen transfer on lipase production by Rhizopus arrhizus, Process Biochem., 36(4), 325–329.
  • Harnby, N., Edwards, M., and Nienow, A. W. (1992). Mixing in the Process Industries. Butterworth-Heinemann, London. pp. 347.
  • Hashim, M. A., Dey, A., Hasan, S., and Sen Gupta, B. (1999). Mass transfer correlation in flotation of palm oil by colloidal gas aphrons, Bioprocess Eng., 21(5), 401–404.
  • Heijnen, J., Riet, K., and Wolthuis, A. (1980). Influence of very small bubbles on the dynamic kla measurement in viscous gas–liquid systems, Biotechnol. Bioeng., 22(9), 1945–1956.
  • Moo-Young, M., and Blanch, H. (1981). Design of Biochemical Reactors Mass Transfer Criteria for Simple and Complex Systems. In: Reactors and Reactions. Adv Biochem Eng, 19, 1–69. Berlin, Heidelberg: Springer-Verlag.
  • Mukataka, S., Kobayashi, T., and Takahashi, J. (1985). Kinetics of enzymatic hydrolysis of lipids in biphasic organic-aqueous systems, J. Ferment. Technol., 63(5), 461–466.
  • Nagata, S. (1975). Mixing: Principles and Applications. New York: John Wiley & Sons.
  • Pouliot, K., Thibault, J., Garnier, A., and Leiva, G. A. (2000). KLa evaluation during the course of fermentation using data reconciliation techniques, Bioprocess. Eng., 23(6), 565–573.
  • Rushton, J. H., Costich, E. W., and Everett, H. J. (1950). Power characteristics of mixing impellers. Part I and II, Chem. Eng. Prog., 46, 395–404, 467–476.
  • Salehmin, M. N. I, Annuar, M. S. M., and Chisti, Y. (2013). High cell density fed-batch fermentations for lipase production: feeding strategies and oxygen transfer, Bioprocess Biosyst. Eng., 36(11), 1527–1543.
  • Salehmin, M. N. I., Annuar, M. S. M., and Chisti, Y. (2014). High cell density fed-batch fermentation for the production of a microbial lipase, Biochem. Eng. J., 85, 8–14.
  • Wilke, C., and Chang, P. (1955). Correlation of diffusion coefficients in dilute solutions, AIChE J. 1(2), 264–270.

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