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By T.K. Ghose ,A. Fiechter, N.Blakebrough
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Additional resources for Advances in Biochemical Engineering, Volume 010 : Immobilized Enzymes I
Sci. 30, 669 (1975) 52. Bischoff, K. : AIChE J. 11,351 (1965) Design and Operation of Immobilized Enzyme Reactors 53. 54. 55. 56. 57. 58. 59. 60. 61. 62. 63. 64. 65. 66. 67. 68. 69. 70. 71. 72. 73. 74. 75. 76. 77. 78. 79. 80. 81. 82. 83. 84. 85. 86. 87. 88. 89. 90. 91. 92. 93. 94. 95. 96. 97. 98. 99. 100. 101. : Can. J. Chem. Eng. 50, 162 (1972) Pitcher, W. H. : Sc. D. Thesis, Mass. Inst. of Tech. (1972) Satterfield, C. , Colton, C. , Pitcher, W. H. : AIChE J. 19,628 (1973) Hamilton, B. , Gardner, C.
Calculation of the selectivity (net rate of formation o f Pl with respect to rate of formation of P2) for various values of 3'1 (So/KIn for enzyme 1) showed that the selectivity is adversely affected by increase in 3'1. Conversely increasing 3'2 results in a considerable increase in selectivity due to suppression of reaction 2. The value of Kin1 and Krn2 (at constant 3q = 3'2) does not markedly alter selectivity although the effectiveness factor 7/(rt is the ratio of the actual rate of reaction of S to the rate of reaction in the absence of diffusional, whether external or internal, effects) is increased.
Biotechnol. Bioeng. : Chemical Reaction Engineering. New York: Wiley 1962 Chung, S. , Wen, C. : AIChE J. 14. 857 (1968) Marsh,D. , Tsao, G. : Biotechnol. Bioeng. 18,349 (1976) O'Neill, S. , Lilly, M. : Biotechnol. Bioeng. 13,337 (1971) Reilly, P. : Iowa State University Engineering Research Report, ERI-77176, 136 (1976) Beck, S. , Rose, H. : lnd. Eng. Chem. Prod. Res. Develop. 12,260 (1973) Regan, D. , Lilly, M. : Biotechnol. Bioeng. 16, 333 (1974) Weetall, H. , Havewala, N. , Garfinkel, H. , Buehl, W.