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Fig. 5 Repeated batch fermentation with S. roseosporus cells.
The system was operated in repeated batch modes, for four cycles.
Three modes of operation are considered: continuous, repeated batch, and repeated fed-batch operation.
Moreover, the ME yields remained above 85% after 20 repeated batch cycles.
The frequency of repeated batch operation was controlled by the measured fermentation redox potential.
The catalyst α-FeOOH maintained its high activity during repeated batch experiments.
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Moreover, the final product was enriched by soluble phosphate solubilized along the repeated-batch process.
Three different repeated-batch fermentations were performed to characterize characteristics of the respiration-deficient mutant.
Further employment of the immobilized mycelium in repeated-batch fermentation process resulted in at least 5 cycles of P solubilization.
The immobilized fungus was able to solubilize HABO when employed in repeated-batch fermentation process in presence of 1.0 and 3.0 g insoluble phosphate per litre (Table 3).
A mathematical framework was developed for the assessment of batch, repeated-batch and repeated fed-batch extractive fermentations of acetone and butanol or ethanol.
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