Affiliation:
1. Department of Applied Microbial Technology, The Kumamoto Institute of Technology, Ikeda 4-22-1, Kumamoto 860, Japan
Abstract
In acetic acid fermentation by
Acetobacter aceti
, the acetic acid produced inhibits the production of acetic acid by this microorganism. To alleviate this inhibitory effect, we developed an electrodialysis fermentation method such that acetic acid is continuously removed from the broth. The fermentation unit has a computerized system for the control of the pH and the concentration of ethanol in the fermentation broth. The electrodialysis fermentation system resulted in improved cell growth and higher productivity over an extended period; the productivity exceeded that from non-pH-controlled fermentation. During electrodialysis fermentation in our system, 97.6 g of acetic acid was produced from 86.0 g of ethanol; the amount of acetic acid was about 2.4 times greater than that produced by non-pH-controlled fermentation (40.1 g of acetic acid produced from 33.8 g of ethanol). Maximum productivity of electrodialysis fermentation in our system was 2.13 g/h, a rate which was 1.35 times higher than that of non-pH-controlled fermentation (1.58 g/h).
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference18 articles.
1. A new enzymatic microdetermination procedure for ethanol with particulate alcohol dehydrogenase from acetic acid bacteria;Ameyama M.;Agric. Biol. Chem.,1978
2. Oxygen transfer and agitation in submerged fermentations. Mass transfer of oxygen in submerged fermentation of Streptomyces griseus;Bartholomew W. H.;Ind. Eng. Chem.,1950
3. Bernt E. and I. Gutmann. 1974. Ethanol determination with alcohol dehydrogenase and NAD p. 1499-1502. In H. U. Bergmeyer (ed.) Methods of enzymatic analysis vol. 3. Academic Press Inc. New York.
4. Performance of agitated gas-liquid contactors;Cooper C. M.;Ind. Eng. Chem.,1944
5. Novel method of lactic acid production by electrodialysis fermentation;Hongo M.;Appl. Environ. Microbiol.,1986
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