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3. Design of a CFSTR Train for an Enzyme-Catalyzed Reaction ( 30 points): A substrate is decomposed in the presence of an enzyme according to

image text in transcribed 3. Design of a CFSTR Train for an Enzyme-Catalyzed Reaction ( 30 points): A substrate is decomposed in the presence of an enzyme according to the Michaelis-Menten equation where the parameters are Km=4mmol/ liter, and rmax=16mmol/litermin. If two CFSTR's are operated in series (Reactor 1=14 liters, Reactor 2=10 liters) at steady-state, what will be: (1) the concentration of substrate leaving each reactor; (2) the \% conversion of substrate from the first reactor; and (3) the overall \%conversion of substrate from the dual reactor system. Assume the volumetric flow rate is constant at Q=Q0=1.50 liter/min and the inlet substrate concentration is 300mmol / liter. Also, assume that the total concentration of enzyme CEt,0 in both reactors is constant at all time so that Vmax and Km are the same in both reactors. Show your calculations to get full credit

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