Journal Article
Does the BioBLU 0.3f single-use scale to the BioFlo® 320 reuseable bioreactor on a matched volumetric oxygen mass transfer coefficient?
Williams Olughu; Duncan Galbraith; Cillian Paget; Steve Ruscoe; Josh Smith; Alison Mason
World Journal of Microbiology and Biotechnology · Vol. 37, Issue 1 · 2021
Abstract
The volumetric oxygen mass transfer coefficient ( $$k_{l} a$$ k l a ) is an essential parameter in aerobic high-cell density fermentation where the availability of oxygen to growing microorganisms is a limiting factor. Bioprocess teams looking to scale-up/down between the Eppendorf BioBLU 0.3f single-use vessel and the BioFlo® 320 reusable vessel bioreactors may find it challenging using a matched $$k_{l} a$$ k l a . The maximum $$k_{l} a$$ k l a of the BioFlo® 320 reusable bioreactor was 109 h −1 , which was approximately twice that of the BioBLU 0.3f single-use vessel. The results here show no overlap in $$k_{l} a$$ k l a values when both bioreactors were compared and thus conclude that scalability based on $$k_{l} a$$ k l a is not viable. The maximum $$k_{l} a$$ k l a of the Eppendorf BioBLU 0.3f single-use reported here was 47 h −1 compared to that of the manufacturer’s value of 2500 h −1 , indicating a 53-fold difference. This discrepancy was attributed to the incompatible sulfite addition method used by the manufacturer for estimation.
Bibliographic Information
| Journal | World Journal of Microbiology and Biotechnology |
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| Publisher | Springer |
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| Publication Date | 2021-01-01 |
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| Publication Year | 2021 |
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| Volume | 37 |
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| Issue | 1 |
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| Document Type | Journal Article |
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| eISSN | 1573-0972 |
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| DOI | 10.1007/s11274-020-02968-2 |
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