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Butanediol production by Aerobacter aerogenes NRRL B199: Effects of initial substrate concentration and aeration agitation
Author(s) -
Sablayrolles J. M.,
Goma G.
Publication year - 1984
Publication title -
biotechnology and bioengineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.136
H-Index - 189
eISSN - 1097-0290
pISSN - 0006-3592
DOI - 10.1002/bit.260260207
Subject(s) - aeration , chemistry , 2,3 butanediol , fermentation , substrate (aquarium) , enterobacter aerogenes , butanediol , metabolite , oxygen , chromatography , sucrose , 1,4 butanediol , biomass (ecology) , food science , biochemistry , organic chemistry , biology , catalysis , ecology , escherichia coli , gene , agronomy
Butanediol production by Aerobacter aerogenes NRRL B199 grown on glucose requires an optimal rate of aeration for the obtention of butanediol 2, 3. In the absence of air, Aerobacter aerogenes NRRL B199 growth and production are weak. Agitation‐aeration is necessary for producing the biomass, but an excess of oxygen proves to be toxic with regard to metabolite production. Oxygen is a limiting substrate with regard to growth and an inhibitor with regard to the specific metabolite productivity. This observation is discussed from a kinetic stand point and in relation to the search for the optimum oxygen transfer coefficient ( K L a ), which is found to be in the range of 50–100h −1 . It has also been observed that K L a increases during the fermentation cycle. The initial substrate concentration effects the yield production of biomass and butanediol production. Low yields of butanediol are obtained at low initial sugar concentrations, but good yields of butanediol are obtained (0.45 g/g) at high concentrations of glucose (195 g/L). Carbon substrates and butanediol are inhibitors of cell growth while butanediol is not quite an inhibitor of the specific rate of butanediol production for the range of butanediol of 0–100 g/L.

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