Continuous Culture 8: Biotechnology, Medicine and the EnvironmentA. C. R. Dean, Derek C. Ellwood, C. G. T. Evans Society of Chemical Industry, London, 1984 - 322 pagine |
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Pagina 128
... efficiency ; μ = specific growth rate ( h1 ) ; He specific maintenance energy rate ( h ̄1 ) . = A comparison of data ... efficiency factor for growth ( c ) is the factor by which the absorbed energy is converted into cell materials ; so ...
... efficiency ; μ = specific growth rate ( h1 ) ; He specific maintenance energy rate ( h ̄1 ) . = A comparison of data ... efficiency factor for growth ( c ) is the factor by which the absorbed energy is converted into cell materials ; so ...
Pagina 130
... efficiency of 0.093 . This value means an efficiency of toC / absorbed quantum . The quantum yield per O2 produced is higher because the cell is more reduced than carbohydrate , which means that the theoretical maximum value of O2 ...
... efficiency of 0.093 . This value means an efficiency of toC / absorbed quantum . The quantum yield per O2 produced is higher because the cell is more reduced than carbohydrate , which means that the theoretical maximum value of O2 ...
Pagina 248
... efficiency of energy conservation from substrate oxidation , i.e. on the P / O ratio . The P / O ratio will not necessarily be a direct function of the number of proton - translocating loons . For example , in R. leguminosarum there are ...
... efficiency of energy conservation from substrate oxidation , i.e. on the P / O ratio . The P / O ratio will not necessarily be a direct function of the number of proton - translocating loons . For example , in R. leguminosarum there are ...
Sommario
Preface | 9 |
Expression of virulence determinants in Bordetella pertussis | 22 |
The role of the bacterial envelope in antibiotic resistance | 38 |
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Continuous Culture 8: Biotechnology, Medicine, and the Environment A. C. R. Dean,Derek C. Ellwood,C. G. T. Evans Visualizzazione estratti - 1984 |
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acetate Acinetobacter activated sludge activated sludge process aerobic agardhii amount anaerobic antibiotics antigen bacteria Bacteriol batch culture biological biomass Biotechnol C-lim carbohydrate carbon cell wall chemolithotrophic chemostat chemostat culture citrate colicin components continuous culture copy number dental plaque dilution rate efficiency Ellwood energy environment enzyme Escherichia coli ethanol extracellular fermentation floc fructose gene genetic glucose glucose-limited Gram-negative growing grown growth conditions growth yields heterotrophic Immun increase Infect Jour Knox Kuenen lipid lipid accumulation medium metabolism microbial Microbiol microorganisms mixed culture mixotroph mutans Ingbritt Nikaido nitrogen nutrient oral organisms outer membrane oxidation oxygen pertussis phosphorus physiological plasmid plasmid-free polymer polysaccharide population porin production protein Pseudomonas ratio Ratledge reactor resistance selection serum specific growth rate strain Streptococcus mutans studies sucrose surface synthesis Table teichoic acid Thiobacillus Thiobacillus A2 thiosulphate tion uptake utilization values virulence viscosus Wicken