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Publikationstyp: Beitrag in wissenschaftlicher Zeitschrift
Art der Begutachtung: Peer review (Publikation)
Titel: Development of a method for reliable power input measurements in conventional and single-use stirred bioreactors at laboratory scale
Autor/-in: Kaiser, Stephan C.
Werner, Sören
Jossen, Valentin
Kraume, Matthias
Eibl, Dieter
et. al: No
DOI: 10.1002/elsc.201600096
10.21256/zhaw-19650
Erschienen in: Engineering in Life Sciences
Band(Heft): 17
Heft: 5
Seite(n): 500
Seiten bis: 511
Erscheinungsdatum: 2017
Verlag / Hrsg. Institution: Wiley
ISSN: 1618-0240
1618-2863
Sprache: Englisch
Schlagwörter: Measurement; Power input; Single‐use bioreactor; Stirrer; Torque
Fachgebiet (DDC): 660: Technische Chemie
Zusammenfassung: Power input is an important engineering and scale-up/down criterion in stirred bioreactors. However, reliably measuring power input in laboratory-scale systems is still challenging. Even though torque measurements have proven to be suitable in pilot scale systems, sensor accuracy, resolution, and errors from relatively high levels of friction inside bearings can become limiting factors at smaller scales. An experimental setup for power input measurements was developed in this study by focusing on stainless steel and single-use bioreactors in the single-digit volume range. The friction losses inside the air bearings were effectively reduced to less than 0.5% of the measurement range of the torque meter. A comparison of dimensionless power numbers determined for a reference Rushton turbine stirrer (NP = 4.17 ± 0.14 for fully turbulent conditions) revealed good agreement with literature data. Hence, the power numbers of several reusable and single-use bioreactors could be determined over a wide range of Reynolds numbers between 100 and >104. Power numbers of between 0.3 and 4.5 (for Re = 104) were determined for the different systems. The rigid plastic vessels showed similar power characteristics to their reusable counterparts. Thus, it was demonstrated that the torque-based technique can be used to reliably measure power input in stirred reusable and single-use bioreactors at the laboratory scale.
URI: https://digitalcollection.zhaw.ch/handle/11475/19650
Volltext Version: Publizierte Version
Lizenz (gemäss Verlagsvertrag): CC BY-NC-ND 4.0: Namensnennung - Nicht kommerziell - Keine Bearbeitungen 4.0 International
Departement: Life Sciences und Facility Management
Organisationseinheit: Institut für Chemie und Biotechnologie (ICBT)
Enthalten in den Sammlungen:Publikationen Life Sciences und Facility Management

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Kaiser, S. C., Werner, S., Jossen, V., Kraume, M., & Eibl, D. (2017). Development of a method for reliable power input measurements in conventional and single-use stirred bioreactors at laboratory scale. Engineering in Life Sciences, 17(5), 500–511. https://doi.org/10.1002/elsc.201600096
Kaiser, S.C. et al. (2017) ‘Development of a method for reliable power input measurements in conventional and single-use stirred bioreactors at laboratory scale’, Engineering in Life Sciences, 17(5), pp. 500–511. Available at: https://doi.org/10.1002/elsc.201600096.
S. C. Kaiser, S. Werner, V. Jossen, M. Kraume, and D. Eibl, “Development of a method for reliable power input measurements in conventional and single-use stirred bioreactors at laboratory scale,” Engineering in Life Sciences, vol. 17, no. 5, pp. 500–511, 2017, doi: 10.1002/elsc.201600096.
KAISER, Stephan C., Sören WERNER, Valentin JOSSEN, Matthias KRAUME und Dieter EIBL, 2017. Development of a method for reliable power input measurements in conventional and single-use stirred bioreactors at laboratory scale. Engineering in Life Sciences. 2017. Bd. 17, Nr. 5, S. 500–511. DOI 10.1002/elsc.201600096
Kaiser, Stephan C., Sören Werner, Valentin Jossen, Matthias Kraume, and Dieter Eibl. 2017. “Development of a Method for Reliable Power Input Measurements in Conventional and Single-Use Stirred Bioreactors at Laboratory Scale.” Engineering in Life Sciences 17 (5): 500–511. https://doi.org/10.1002/elsc.201600096.
Kaiser, Stephan C., et al. “Development of a Method for Reliable Power Input Measurements in Conventional and Single-Use Stirred Bioreactors at Laboratory Scale.” Engineering in Life Sciences, vol. 17, no. 5, 2017, pp. 500–11, https://doi.org/10.1002/elsc.201600096.


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