Fluorescence measurements under aerobic and anaerobic conditions on Pichia stipitis, Pachysolen tannophilus and Candida utilis grown on D-xylose
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[1] G Stephanopoulos,et al. Physiological, biochemical, and mathematical studies of micro‐aerobic continuous ethanol fermentation by Saccharomyces cerevisiae. II: Intracellular metabolite and enzyme assays at steady state chemostat cultures , 1990, Biotechnology and bioengineering.
[2] G. Rao,et al. Practical Considerations in the Measurement of Culture Fluorescence , 1990, Biotechnology progress.
[3] J. Delgenès,et al. Fermentation of D-xylose, D-glucose, L-arabinose mixture by Pichia stipitis: Effect of the oxygen transfer rate on fermentation performance. , 1989, Biotechnology and bioengineering.
[4] K Schügerl,et al. On‐Line Measurement of Culture Fluorescence for Process Monitoring and Control of Biotechnological Processes , 1987, Annals of the New York Academy of Sciences.
[5] D. Zabriskie,et al. THE INTERPRETATION OF ON-LINE PROCESS MEASUREMENTS OF INTRACELLULAR NADH IN FERMENTATION PROCESSES , 1986 .
[6] P. M. Bruinenberg,et al. NADH-linked aldose reductase: the key to anaerobic alcoholic fermentation of xylose by yeasts , 1984, Applied Microbiology and Biotechnology.
[7] B. Prior,et al. The effect of aeration on xylose fermentation by Candida shehatae and Pachysolen tannophilus , 1984, Applied Microbiology and Biotechnology.
[8] D. Harrison,et al. Fluorimetric technique for monitoring changes in the level of reduced nicotinamide nucleotides in continuous cultures of microorganisms. , 1970, Applied microbiology.
[9] T. Jeffries. Utilization of xylose by bacteria, yeasts, and fungi. , 1983, Advances in biochemical engineering/biotechnology.
[10] M. Rieger. Untersuchung zur Regulation von Glykolyse und Atmung in Saccharomyces cerevisiae , 1983 .
[11] David F. Ollis,et al. Biochemical Engineering Fundamentals , 1976 .
[12] D. R. Coughanowr,et al. Process systems analysis and control , 1965 .