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PMID: 29445862 Published · ppublish English Journal Article

Hydrodynamic performance of a single-use aerated stirred bioreactor in animal cell culture: applications of tomography, dynamic gas disengagement (DGD), and CFD.

Bioprocess and biosystems engineering ·Vol. 41 ·No. 5 ·2018-05-00 ·页码 679-695

Kazemzadeh A, Elias C, Tamer M, Ein-Mozaffari F

Abstract

The hydrodynamics of gas-liquid two-phase flow in a single-use bioreactor were investigated in detail both experimentally and numerically. Electrical resistance tomography (ERT) and dynamic gas disengagement (DGD) combined with computational fluid dynamics (CFD) were employed to assess the effect of the volumetric gas flow rate and impeller speed on the gas-liquid flow field, local and global gas holdup values, and Sauter mean bubble diameter. From the results obtained from DGD coupled with ERT, the bubble sizes were determined. The experimental data indicated that the total gas holdup values increased with increasing both the rotational speed of impeller and volumetric gas flow rate. Moreover, the analysis of the flow field generated inside the aerated stirred bioreactor was conducted using CFD results. Overall, a more uniform distribution of the gas holdup was obtained at impeller speeds ≥ 100 rpm for volumetric gas flow rates ≥ 1.6 × 10-5 m3/s.

Keywords
Bioreactor Computational fluid dynamics (CFD) Dynamic gas disengagement (DGD) Electrical resistance tomography (ERT) Gas holdup Hydrodynamics Mixing
MeSH 主题词
Animals Bioreactors Cell Culture Techniques/methods Hydrodynamics Models, Biological
作者与单位
共 4 位作者,点击展开单位 / ORCID
Kazemzadeh Argang
Department of Chemical Engineering, Ryerson University, 350 Victoria Street, Toronto, M5B 2K3, Canada.
Elias Cynthia
Sanofi Pasteur Company, 1755 Steels Avenue West, North York, Toronto, M2R 3T4, Canada.
Tamer Melih
Sanofi Pasteur Company, 1755 Steels Avenue West, North York, Toronto, M2R 3T4, Canada.
Ein-Mozaffari Farhad
Department of Chemical Engineering, Ryerson University, 350 Victoria Street, Toronto, M5B 2K3, Canada. [email protected].
Article Info
Journal
Bioprocess and biosystems engineering
Abbr.
Bioprocess Biosyst Eng
ISSN
1615-7605
Corresponding email
Published
2018-05-00
电子出版
2018-00-14
页码
679-695
Language
English
Country/Region
Germany
NLM ID
101088505
基金资助
Natural Sciences and Engineering Research Council of Canada · EGP 492102-15
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