Download Technology Transfer in Biotechnology: From Lab to Industry by K. Schügerl (auth.), Udo Kragl (eds.) PDF

By K. Schügerl (auth.), Udo Kragl (eds.)

K. Schügerl: Extraction of basic and Secondary Metabolites.- A. Aivasidis, V.I. Diamantis: Biochemical response Engineering and method improvement in Anaerobic Wastewater Treatment.- A. Knoll, B. Maier, H. Tscherrig, J. Büchs.: at the Oxygen Mass move, Carbon Dioxide Inhibition, warmth elimination and lively and price potency of excessive strain Fermentations.- J. Hubbuch, J. Thömmes, M.-R. Kula: increased mattress Adsorption - Biochemical Engineering Aspects.- D. Weuster-Botz: Parallel Reactor structures for the Bioprocess Development.- W. Wiechert, ok. Nöh: From desk bound to Instationary Metabolic Flux Analysis.- M. Oldiges, R. Takors: utilizing Metabolic Profiling recommendations for Stimulus-Response Experiments: percentages and Pitfalls.- A. Liese: Technical software of organic rules in uneven Catalysis.- R. Wichmann, D. Vasic-Racki: Cofactor Regeneration at Lab Scale.- M. Müller, M. Wolberg, T. Schubert: uneven Enzyme-Catalyzed area- and Enantioselective Carbonyl Reductions.- J. Wöltinger, a. Karau, W. Leuchtenberger, okay. Drauz: Membrane Reactors at Degussa.

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90. 91. 92. 93. 94. 95. 96. 97. 98. 99. 100. 101. 102. 103. 104. 105. 106. 107. 108. 109. 110. 111. 112. 113. 114. 115. 116. 117. 118. 119. 120. 121. 122. 123. 124. 125. 43 Jost JL, Kominek LA, Hyatt GS, Wang HY (1984) Cylcoheximid. In: Ref. [67], p 531 Shreve RN, Brink JAS (1977) Chemical process industries. McGraw Hill, New York, p 777 van Daehne W, Jahnsen S, Kirk I, Larsen R, Lörk H (1984) Fusidic acid. In: Ref. [67] Huber FM, Tietz AJ (1984) Griseofulvin. In: Ref. [67], p 551 Higashide Macrolides (1984) Macrolides.

The emulsion phase was continuously withdrawn at the top of the column, broken by electro-coalescence, and 6-APA was Extraction of Primary and Secondary Metabolites 33 then recovered. The 6-APA was converted to ampicillin using D-phenylglycine methylester and immobilised Penicillin G-amidase at pH 6 in a separate column. This process worked well with laboratory Penicillium chrysogenum strains. After enrichment of 6-APA in the acceptor phase, this caused emulsion instability. 2 Solid Supported Liquid Membrane Hollow fibre membranes can be used for the physical separation of medium components.

Some investigations have dealt with the extractive bioconversion of polymers (starch, cellulose, casein) to monomers. In these systems, the biocatalysts are immobilised in one of the phases and the low molecular product is extracted in situ into the other phase [237]. This is not well suited for the selective extraction of low molecular metabolites, so it will not be compared with the other extraction techniques. We do not have enough information on the extraction of primary and secondary metabolites with reversed micelles to compare it with the other extraction processes.

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