Improvement of foam breaking and oxygen-transfer performance in a stirred-tank fermenter

Bioprocess and Biosystems Engineering - Tập 28 - Trang 235-242 - 2005
Satoshi Takesono1, Masayuki Onodera1, Kiyoshi Toda1, Masanori Yoshida2, Kazuaki Yamagiwa2, Akira Ohkawa2
1Department of Applied Chemistry and Biotechnology, Niigata Institute of Technology, Niigata, Japan
2Department of Chemistry and Chemical Engineering, Niigata University, Niigata, Japan

Tóm tắt

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, k L a, 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.

Tài liệu tham khảo

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