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Updated: Aug 15, 2026

A Novel Bioreactor for High Density Cultivation of Diverse Microbial Communities
Published on: December 25, 2015
Improvement of foam breaking and oxygen-transfer performance in a stirred-tank fermenter
Satoshi Takesono1, Masayuki Onodera, Kiyoshi Toda
1Department of Applied Chemistry and Biotechnology, Niigata Institute of Technology, Fujihashi, Kashiwazaki, 945-1103, Niigata, Japan. takesono@acb.niit.ac.jp
Abstract:
This study examined a stirred-tank fermenter (STF) containing low-viscosity foaming liquids with an agitation impeller and foam-breaking impeller mounted on the same shaft. Results showed that the performance of the foam-breaking impeller can be improved by changing a conventional six-blade turbine impeller into a rod impeller as the agitation impeller. The volumetric oxygen-transfer coefficient, kLa, in the mechanical foam-control method (MFM) using a six-blade vaned disk as the foam-breaking impeller in the STF with the rod impeller was approximately five times greater than that of the chemical foam-control method (CFM) adding an anti-foaming agent in the STF with the six-blade turbine impeller. Application of the present method to the cultivation of Saccharomyces cerevisiae K-7 demonstrated that the cultivation time up to the maximum cell concentration was remarkably shorter than that achieved using a conventional CFM.
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