Computational fluid dynamics simulation improves the design and characterization of a plug-flow-type scale-down reactor for microbial cultivation processes.

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Bibliographic Details
Title: Computational fluid dynamics simulation improves the design and characterization of a plug-flow-type scale-down reactor for microbial cultivation processes.
Authors: Mayer F; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria., Cserjan-Puschmann M; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria., Haslinger B; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria., Shpylovyi A; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria., Sam C; Boehringer Ingelheim RCV GmbH & Co KG, Vienna, Austria., Soos M; Department of Chemical Engineering, University of Chemistry and Technology Prague, Praha, Czech Republic., Hahn R; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria., Striedner G; Department of Biotechnology, Institute of Bioprocess Science and Engineering, University of Natural Resources and Life Sciences, Vienna, Austria.
Source: Biotechnology journal [Biotechnol J] 2023 Jan; Vol. 18 (1), pp. e2200152. Date of Electronic Publication: 2022 Nov 28.
Publication Type: Journal Article
Journal Info: Publisher: Wiley-VCH Verlag Country of Publication: Germany NLM ID: 101265833 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1860-7314 (Electronic) Linking ISSN: 18606768 NLM ISO Abbreviation: Biotechnol J Subsets: MEDLINE
Database: MEDLINE Ultimate
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Description
ISSN:1860-7314
DOI:10.1002/biot.202200152