Annika Rosseburg Rosseburg Influence of heterogeneous bubbly flows on mixing and mass transfer performance in stirred tanks for mammalian cell cultivation

Influence of heterogeneous bubbly flows on mixing and mass transfer performance in stirred tanks for mammalian cell cultivation

von Annika Rosseburg

A study in transparent 3 L and 12 000 L reactors

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Beschreibung

Aerated stirred tank reactors are widely used in chemical and pharmaceutical industry in which mass transport and mixing time are among the most important parameters. Despite their importance, the prediction of theses parameters is still challenging due to large differences of the hydrodynamic inhomogeneities between lab scale and industrial scale. This thesis focuses on the measurement of these inhomogeneities and their influence on the important process parameters. In order to determine the differences to industrial processes, a transparent stirred tank reactor on industrial scale has been erected at the Hamburg University of Technology.
Aerated stirred tank reactors are widely used in chemical and pharmaceutical industry in which mass transport and mixing time are among the most important parameters. Despite their importance, the prediction of theses parameters is still challenging due to large differences of the hydrodynamic inhomogeneities between lab scale and industrial scale. This thesis focuses on the measurement of these inhomogeneities and their influence on the important process parameters. In order to determine the differences to industrial processes, a transparent stirred tank reactor on industrial scale has been erected at the Hamburg University of Technology.

Autor*in

Annika Rosseburg

Themen in »Influence of heterogeneous bubbly flows on mixing and mass transfer performance in stirred tanks for mammalian cell cultivation«

Aerated stirred tank reactor Belüfteter Rührkesselreaktor Blasenströmung Strömungsstrukturen Einfluss Fächer Heterogenität Komplexität Labor Laufrad Masse Mischen Mischzeit Prozesse Reaktoren Skala

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Details

ISBN: 9783736971080
Verlag: Cuvillier Verlag
Erscheinung: 13.11.2019

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