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Original

Adsorption of Lipase on Hollow Fiber Membrane Chips

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Pages 423-433 | Published online: 11 Jul 2009

REFERENCES

  • Al-Zuhair, S., Hasan, M., Ramachandran, K.B. (2003). Kinetic hydrolysis of palm oil using lipase. Proc. Biochem. 38: 1155–1163. [CSA]
  • Knezevic, Z., Mojovic, L., Adnabjevic, B. (1998). Palm oil hydrolysis of lipase from candida cylindracea immobilised on zeolite Type Y. Enz. Microb. Technol. 22(4): 275–280. [CSA], [CROSSREF]
  • Bjorkling, F., Godtfredsen, S.E., Kirk, O. (1991). The future impact of industrial lipases. Trens. Biotech. 9: 360–363. [CSA], [CROSSREF]
  • Balcao, V.M., Paiva, A.L., Malcata, F.X. (1996). Bioreactors with immobilised lipases: state of the art. Enz. and Microb. Tech. 18: 392–416. [CSA], [CROSSREF]
  • Shamel, M.M., Ramachandran, K.B., Hasan, M. (2002). Stability of lipase enzyme: effect of temperature and shear. Regional Symposium of Chemical Engineers RSCE 2002, Kuala Lumpur, Malaysia, 165–168.
  • Guit, R.P.M., Kloosterman, M., Meindersma, G.W., Mayer, M., Meijer, E.M. (1991). Lipase kinetics: hydrolysis of triacetin by lipase from candida cylindracea in a hollow fibre membrane reactor. Biochem. and Bioeng. 38: 727–732. [CSA], [CROSSREF]
  • Al-Duri, B., Robinson, E., McNerlan, S., Bailie, P. (1995). Hydrolysis of edible oils by lipases immobilized on hydrophobic support: effect of internal support structure. J.A.O.C.S. 72(11): 1351–1359. [CSA]
  • Shamel, M.M., Ramachandran, K.B., Hasan, M. (2003). Effect of hollow fiber membrane material and operating conditions on lipase adsorption. IMSTEC ′03, The Fifth International Membrane Science & Technology Conference, Australia.
  • Malcata, F.X., Hill, J.C., Amundson, C.H. (1992). Hydrolysis of butteroil by immobilised lipase using a hollow-fibre reactor. Part II. Uniresponse kinetic studies. Biotech. and Bioeng. 39: 984–1001. [CSA], [CROSSREF]
  • Malcata, F.X., Hill, J.C., Amundson, C.H. (1992). Hydrolysis of butteroil by immobilised lipase using a hollow-fibre reactor. Part III. Multiresponse kinetic studies. Biotech. and Bioeng. 39: 1002–1012. [CSA], [CROSSREF]
  • Malcata, F.X., Hill, J.C., Amundson, C.H. (1992). Hydrolysis of butteroil by immobilised lipase using a hollow-fiber reactor. Part I. Lipase adsorption studies. Biotech. and Bioeng. 39: 647–657. [CSA], [CROSSREF]
  • Tsai, S.W., Shaw, S.S. (1998). Selection of hydrophobic membrane in the lipase-catalysed hydrolysis of olive oil. J. Membrane Sci. 146: 1–11. [CSA], [CROSSREF]
  • Hoq, M., Tsuneo, Y., Shimizu, S., Funada, T., Ishida, S. (1985). Continuous hydrolysis of olive oil by lipase in microporous hydrophobic membrane. J.A.O.C.S. 62: 1016–1021. [CSA]
  • Hoq, M., Koike, M., Tsuneo, Y., Shimizu, S. (1985). Continuous hydrolysis of olive oil by lipase in microporous hydrophobic hollow bioreactor. Agri. Bio. Chem. 49(11): 3171–3178. [CSA]
  • Novo Industrials. (1995). Analytical Method Handout, Enzyme Process Division, Novo Industries: Denmark.
  • Bruce, L., Henrik, K., Robert, L. (1991). Thermostable enzymes for industrial applications. Journal of Industrial Microbiology 8: 1–10. [CSA], [CROSSREF]
  • Basri, M., Ampon, K., Yunus, W.M., Che Nyonya, A.R., Bakar, S. (1994). Immobilization of hydrophobic lipase derivatives on to organic polymer beads. J. Chem. Tech. Biotechnol. 59: 37–44. [CSA], [CROSSREF]

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