3. The growth of S. cerevisiae on glucose at anaerobic conditions in a batch bioreactor is given by C6H12O6 + 0.112NH3 → 0.59CH1.74N0.2O0.45 + 0.43C;H§O3 + 0.036H2O + 1.3C2H5OH + 1.54CO2 The growth occurs in a batch bioreactor with a volume of 10ª L. Draw and label the process flow diagram of the process

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3. The growth of S. cerevisiae on glucose at anaerobic conditions in a batch bioreactor is given
by
C6H12O6 + 0.112NH3 → 0.59CH1.74N0.200.45 + 0.43C;H3O3 + 0.036H2O
+ 1.3C2H5OH + 1.54CO2
The growth occurs in a batch bioreactor with a volume of 104 L.
a. Draw and label the process flow diagram of the process.
b. Determine the degrees of freedom of the problem.
c. If the feed does not have any biomass the final biomass concentration produced is
60 g L-'. Determine the concentration of glucose and ammonium sulfate in the feed
if all the glucose and ammonium sulfate are used up.
d. Calculate also the concentration C3H3O3, C2H5OH and CO2 produced.
Transcribed Image Text:3. The growth of S. cerevisiae on glucose at anaerobic conditions in a batch bioreactor is given by C6H12O6 + 0.112NH3 → 0.59CH1.74N0.200.45 + 0.43C;H3O3 + 0.036H2O + 1.3C2H5OH + 1.54CO2 The growth occurs in a batch bioreactor with a volume of 104 L. a. Draw and label the process flow diagram of the process. b. Determine the degrees of freedom of the problem. c. If the feed does not have any biomass the final biomass concentration produced is 60 g L-'. Determine the concentration of glucose and ammonium sulfate in the feed if all the glucose and ammonium sulfate are used up. d. Calculate also the concentration C3H3O3, C2H5OH and CO2 produced.
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