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Food Lipids: Chemistry, Nutrition, and Biotechnology

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76. D. G. Hayes <strong>and</strong> E. Gulari. Esterification reactions of lipase in reverse micelles. Biotechnol.<br />

Bioeng. 35:793–801.<br />

77. M. Safari <strong>and</strong> S. Kermasha. Interesterification of butterfat by commercial microbial<br />

lipases in a cosurfactant-free microemulsion system. J. Am. Oil Chem. Soc. 71(9):969–<br />

973 (1994).<br />

78. F. Ergan, M. Trani, <strong>and</strong> G. Andre. Use of lipases in multiphasic systems solely composed<br />

of substrates. J. Am. Oil Chem. Soc. 68(6):412–417 (1991).<br />

79. O. R. Zaborsky. Immobilized Enzymes. CRC Press, Boca Raton, FL, 1973, pp. 75,<br />

119–123.<br />

80. P. S. J. Cheetham. The application of immobilized enzymes <strong>and</strong> cells <strong>and</strong> biochemical<br />

reactors in biotechnology: Principles of enzyme engineering. Principles of <strong>Biotechnology</strong>,<br />

2nd ed. (A. Wiseman, ed.). Chapman <strong>and</strong> Hall, New York, 1988, pp. 164–201.<br />

81. A. Mustranta, P. Forssell, <strong>and</strong> K. Poutanen. Applications of immobilized lipases to<br />

transesterification <strong>and</strong> esterification reactions in non-aqueous systems. Enzyme Microb.<br />

Technol. 15:133–139 (1993).<br />

82. F. X. Malcata, H. S. Garcia, C. G. Hill Jr., <strong>and</strong> C. H. Amundson. Hydrolysis of butteroil<br />

by immobilized lipase using a hollow-fiber reactor: Part I. Lipase adsorption studies.<br />

Biotechnol. Bioeng. 39:647–657 (1992).<br />

83. I. Karube, Y. Yugeta, <strong>and</strong> S. Suzuki. Electric field control of lipase membrane activity.<br />

Biotechnol. Bioeng. 19:1493–1501 (1977).<br />

84. A. P. Ison, A. R. Macrae, C. G. Smith, <strong>and</strong> J. Bosley. Mass transfer effects in solventfree<br />

fat interesterification reactions: Influence on catalyst design. Biotechnol. Bioeng.<br />

43:122–130 (1994).<br />

85. R. A. Wisdom, P. Dunnill, <strong>and</strong> M. D. Lilly. Enzymatic interesterification of fats: Factors<br />

influencing the choice of support for immobilized lipase. Enzyme Microb. Technol. 6:<br />

443–446 (1984).<br />

86. G. Abraham. Mass transfer in bioreactors. In: Proceedings: World Conference on <strong>Biotechnology</strong><br />

for the Fats <strong>and</strong> Oils Industry (T. H. Applewhite, ed.). American Oil Chemist’s<br />

Society, Champaign, IL, 1988, pp. 219–225.<br />

87. B. K. Hamilton, C. R. Gardner, <strong>and</strong> C. K. Colton. Basic concepts in the effects of mass<br />

transfer on immobilized enzyme kinetics. In: Immobilized Enzymes in <strong>Food</strong> <strong>and</strong> Microbial<br />

Processes (A. C. Olson <strong>and</strong> C. L. Cooney, eds.). Plenum Press, New York,<br />

1974, pp. 205–219.<br />

88. W. E. Hornby, M. D. Lilley, <strong>and</strong> E. M. Crook. Some changes in the reactivity of<br />

enzymes resulting from their chemical attachment of water-insoluble derivatives of<br />

cellulose. Biochem. J. 107:669–674 (1968).<br />

89. L. H. Posorske, G. K. LeFebvre, C. A. Miller, T. T. Hansen, <strong>and</strong> B. L. Glenvig. Process<br />

considerations of continuous fat modification with immobilized lipase. J. Am. Oil<br />

Chem. Soc. 65:922–926 (1988).<br />

90. J. Kloosterman IV, P. D. van Wassenaar, <strong>and</strong> W. J. Bel. Modification of fats <strong>and</strong> oils<br />

in membrane bioreactors. In: Proceedings: World Conference on <strong>Biotechnology</strong> for the<br />

Fats <strong>and</strong> Oils Industry (T. H. Applewhite, ed.). American Oil Chemist’s Society, Champaign,<br />

IL, 1988, pp. 219–225.<br />

91. R. A. Wisdom, P. Dunnill, <strong>and</strong> M. D. Lilly. Enzymic interesterification of fats: Laboratory<br />

<strong>and</strong> pilot-scale studies with immobilized lipase from Rhizopus arrhizus. Biotechnol.<br />

Bioeng. 29:1081–1085 (1987).<br />

92. W. E. Hornby, M. D. Lilley, <strong>and</strong> E. M. Crook. Some changes in the reactivity of<br />

enzymes resulting from their chemical attachment of water-insoluble derivatives of<br />

cellulose. J. Biochem. 107:669–674 (1968).<br />

93. P. Forssell, P. Parovuori, P. Linko, <strong>and</strong> K. Poutanen. Enzymatic transesterification of<br />

rapeseed oil <strong>and</strong> lauric acid in a continuous reactor. J. Am. Oil Chem. Soc. 70(11):<br />

1105–1109 (1993).<br />

Copyright 2002 by Marcel Dekker, Inc. All Rights Reserved.

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