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A constant volume repetitive batch operation was designed which used the IPTG induced E. coli cells as the inoculum for the subsequent batch operation.
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These operations were designed to provide medialisation.
The frequency of repeated batch operation was controlled by the measured fermentation redox potential.
The performances of repeated batch and fed-batch operations with/without recycle and continuous operation followed by batch operation are compared by examining dispositions of batch reactions trajectories/surfaces in the two- and three-dimensional spaces of concentration variables.
Furthermore, in this system, there is a case that the batch operation is more effective than the continuous operation.
Repetitive batch operation is a robust alternative, where the cells are maintained in active exponential growth phase by the use of induced inoculum in subsequent batches.
Semi-batch operation was modelled by extending the earlier batch reactor model and also used experimentally.
Model-based fed-batch operation was very helpful for over producing PHB by R. eutropha.
Both continuous and batch operations were carried out.
Repeated fed-batch operation to remove 10% of culture broth and to supplement an equal volume of 200 g/l xylose was designed to improve xylitol production.
Batch assessments were designed using response surface methodology software.
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CEO of Professional Science Editing for Scientists @ prosciediting.com