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. |
Dall'interno del libro
Risultati 1-3 di 53
Pagina 22
... constant rate at all values of μ , therefore becoming of proportionately greater impor- tance as μ decreases . Using ... constant and represents the endogenous metabolism . when S >> K μ = น m and when S = 0 , μ e - It follows that : Не ...
... constant rate at all values of μ , therefore becoming of proportionately greater impor- tance as μ decreases . Using ... constant and represents the endogenous metabolism . when S >> K μ = น m and when S = 0 , μ e - It follows that : Не ...
Pagina 160
... constant while the initial values ( growth rate , yield , saturation constant ) of the original strain corresponded to the values of the pro- duction mutant of Bacillus subtilis . These calculated results were then compared with ...
... constant while the initial values ( growth rate , yield , saturation constant ) of the original strain corresponded to the values of the pro- duction mutant of Bacillus subtilis . These calculated results were then compared with ...
Pagina 161
... constant K on the assumption that 0.38 , = 0.60 h - 1 and that K2 rises from 25 mg to 50 mg to 100 mg substrate litre 1. K1 is constant at 50 mg litre - 1 . = It can be seen that with rising saturation constant the accumulation of the ...
... constant K on the assumption that 0.38 , = 0.60 h - 1 and that K2 rises from 25 mg to 50 mg to 100 mg substrate litre 1. K1 is constant at 50 mg litre - 1 . = It can be seen that with rising saturation constant the accumulation of the ...
Sommario
Stoicheiometric Aspects of Microbial Growth | 1 |
Stoicheiometric Aspects of Microbial Growth | 7 |
Definition of a Mole of Microorganism | 13 |
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2-oxogluconate acetate activity of B-galactosidase aeruginosa amino acids ammonia assimilation autotrophic bacteria bacterium batch culture Biochem Bioeng biomass Biotechnol carbon source carbon-limited cell yield cellulose Chem chemical chemostat chemostat cultures ciliates CO₂ coli concentration constant decreased dilution rate dissolved oxygen dry weight effect Ellwood energy source enzyme equations Escherichia coli experiments feed feedstock fermentation FIGURE formation g.atoms GDH-NADP glucose isomerase glucose-limited glutamate dehydrogenase glutamine synthetase glycerol GOGAT growing grown growth-limiting Hyphomicrobium increased inducer inhibition laboratory lactate maximum mechanism medium metabolism metabolites methane-utilising methanol Microbiol Microbiology microorganisms mixed culture mutant obtained organisms pathway periphyton phage phosphatase phosphate physiological population production protein repression SCP processes shown specific activity specific growth rate staphylokinase steady strain Strep studies substrate synthesis Table Tank teichoic acid temperature Tempest tion transport systems tryptophanase uptake utilis utilization values wort yeast
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