Continuous Culture 6: Applications and New FieldsA. C. R. Dean Society of Chemical Industry, London, 1976 - 364 pagine Chichester, England: Published for the Society of Chemical Industry, London, by Ellis Horwood, 1976. |
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Pagina 25
... oxygen . ( Ideally the maximum output rate , D ( 13 ) should be used ) . M In practice , biomass productivity in continuous culture is limited by the oxygen transfer capacity of the fermenter . As oxygen demand increases linearly with ...
... oxygen . ( Ideally the maximum output rate , D ( 13 ) should be used ) . M In practice , biomass productivity in continuous culture is limited by the oxygen transfer capacity of the fermenter . As oxygen demand increases linearly with ...
Pagina 217
... Oxygen Tension ( Enzyme Formation ( P ) and Acid Formation ( F ) 2 , L ) ო In a series of runs stirrer speed ( w ) was varied to obtain different partial anaerobic and aerobic states at two glucose concentrations , Table 2 , being ...
... Oxygen Tension ( Enzyme Formation ( P ) and Acid Formation ( F ) 2 , L ) ო In a series of runs stirrer speed ( w ) was varied to obtain different partial anaerobic and aerobic states at two glucose concentrations , Table 2 , being ...
Pagina 245
... oxygen limitation on phosphatase pro- duction was also studied in continuous culture , A steady state culture , growing at a dilution rate of 0.25 h with oxygen in excess , was made oxygen limited by decreasing the stirrer speed . The ...
... oxygen limitation on phosphatase pro- duction was also studied in continuous culture , A steady state culture , growing at a dilution rate of 0.25 h with oxygen in excess , was made oxygen limited by decreasing the stirrer speed . The ...
Sommario
Stoicheiometric Aspects of Microbial Growth | 7 |
Definition of a Mole of Microorganism | 13 |
Effect of Dilution Rate on Respiration and Yield | 20 |
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2-oxogluconate acetate activity of B-galactosidase aeruginosa amino acids ammonia assimilation autotrophic bacteria Bacteriol batch culture Biochem Biol biomass Biophys Biotechnol carbon source carbon-limited cell yield cellulose Chem chemostat chemostat cultures ciliates concentration continuous culture decreased dilution rate dissolved oxygen effect Ellwood energy source enzyme equations Escherichia coli exoenzyme experiments extracellular feed feedstock fermentation FIGURE formation GDH-NADP glucose isomerase glucose-limited glutamate dehydrogenase glutamine synthetase glycerol GOGAT grown Hyphomicrobium increased inducer inhibition lactate maximum mechanism medium metabolism metabolites methanol microbial Microbiol microorganisms mixed culture mixotrophic mutant nitrite reductase nitrogen source nitrogen-limited obtained organisms oxygen limitation pathway periphyton phage phosphatase phosphate population present production protease protein repression SCP processes shown specific activity specific growth rate staphylokinase steady strain Strep studies substrate subtilis Table Tank teichoic acid temperature Tempest tion transport systems tryptophanase uptake utilis values wort yeast