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1 m o l s of a species A is fed into a continuous gas phase reactor. The following two fast equilibrium reactions take place

1mols of a species A is fed into a continuous gas phase reactor. The following two fast
equilibrium reactions take place in the reactor, which operates at 298K and a pressure P :
R1: ,AB+C+D,Ka,R1=0.375atm2
R2: ,A+BE+C,Ka,R2=3
The output of the reactor is assumed to be at equilibrium. The selectivity of the desired product
D with respect to the undesired product E(Sov) is 2:1.
Organize
(a) Draw a process flow diagram and label all stream and system variables. (4 pts)
(b) Write down three auxiliary equations in terms of the variables you wrote down in
your process flow diagram only. (6 pts)
Analyze
(c)
Solve
(d) Write down all material balances, including the total material
balance. (12 pts)
(e) Solve to determine the fractional selectivity for the formation of
D from )
Hint: express the total output flow rates and all mole fractions in terms of one of the extent of
reaction variables using one of the
AUX eqns and all balances. Then substitute into another AUX eqn which does not involve
the unknown pressure P to solve for the extent of reaction variable. Then solve for all other
unknowns.
(f) Determine the reactor pressure P(2 pts)
As an alternative way to answering (e) and (f), you can write a Matlab code calling fsolve to
solve for the reactor pressure P and calculate the fractional selectivity for the formation of D
from A.
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