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Enzyme Reactions
Title
Author
Language
Continuous processes with soluble enzymes. In: Indian Journal of Chemistry, Vol. 32B, 1993, January, 103-117
Kragl U. et al.
en
Scale-up of enzymatic peptide synthesis in an enzyme membrane reactor. In: Biotechnology and Biochemestry, 13, 1991, 346-353
Hermann G. et al.
en
Engineering aspects of enzyme engineering. Continuous asymmetric C-C bond formation in an enzyme-membrane-reactor. In: Annals of the New York Academy of Sciences, New York, Vol.613, 1990, 167-175
Kragl U. et al.
en
The enzyme membrane reactor - an alternative approach for continuous operation with enzymes. In: Kem. Ind., 35, 1986, 2, 71-77
Schmidt E. et al.
en
Bioreaktoren f
Wandrey C.
de
Einsatz von Membranen bei der kontinuierlichen Coenzym-Regulierung. In: o.O., o.J., 159-178 (Kopie des Manuskripts bei uns, Bioengineering AG, Wald)
Wandrey C.
de
Kontinuierliche Coenzymregenerierung bei Umsetzungen im Enzym-Membran-Reaktor. Informationsblatt der Kernforschungsanlage J
Forschungszentrum J
de
Enzymes and synthetic "biocatalysts" - Application in continuous processes. In: Abstract zum Vortrag auf der ACHEMA '91.
Kragl U. et al.
en
Nat
Kragl U. et al.
de
Membranes in the enzymatic synthesis of biotensides from renewable sources. In: Catalysis Today 104 (2005), p. 318-322.
del Amor Villa E.M., Wichmann R.
en
Process implementation aspects for biocatalytic hydrocarbon oxyfunctionalization. In: Journal of Biotechnology 113 (2004), p. 183-210.
B
en
N-terminal truncation of the variable subunit stabilizes spinach ferredoxin: thioredoxin reductase. In: FEBS Letters 549 (2003), p. 167-170.
Manieri, W. et al.
en
Comparison of xylitol production in recombinant Saccharomyces cerevisiae strains harboring XYL1 gene of Pichia stipitis and GRE3 gene of S. cerevisiae. In: Enzyme and Microbial Technology 31 (2002), p. 862-866.
Kim, M.-D. et al.
en
The production of biocatalysts and biomolecules from extremophiles. In: TRENDS in Biotechnology, Vol. 20, No. 12, December 2002, p. 515-521.
Schiraldi Ch., De Rosa M.
en
Dual modulation of glucose 6-phosphate metabolism to increase NADPH-dependent xylitol production in recombinant Saccharomyces cerevisiae. In: Journal of Molecular Catalysis B: Enzymatic 47 (2007), p. 37-42.
Oh, Y.-J. et al.
en
Studies of operational variables in batch mode for genetically engineered Escherichia coli cells containing penicillin acylase. In: Enzyme Microb. Technol. 15 (1993), December, p. 1070-1073.
Bhattacharya S. et al.
en
Catalytic performance of invertase immobilized by adsorption on anionic exchange resin. In: Process Biochemistry 41 (2006), p. 1325-1331.
Tomotani E.J., Vitolo M.
en
Production of high-fructose syrup using immobilized invertase in a membrane reactor. In: Journal of Food Engineering 80 (2007), p. 662-667.
Tomotani E.J., Vitolo M.
en
Immobilized glucose oxidase as a catalyst to the conversion of glucose into gluconic acid using a membrane reactor. In: Enzyme and Microbial Technology 40 (2007), p.1020-1025.
Tomotani E.J., Vitolo M.
en
Candida rugosa lipase reactions in nonionic w/o-microemulsion with a technical surfactant. In: Enzyme and Microbial Technology 28 (2001), p. 42-48.
Orlich B., Schom
en
Production of fine chemicals using biocatalysis. In: Current Opinion in Biotechnology 10 (1999), p. 595-603.
Liese A., Villela Filho M.
en
Dem Labor entwachsen. Biokatalyse im Festbettreaktor. In: cav 4/2008, S. 74-75.
Koller K.
de
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