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liters The elementary, gas-phase reaction A+B=0 has a rate constant k = 40.0 at 300 K and an ER-7500 K. The feeds to the isothermal

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liters The elementary, gas-phase reaction A+B=0 has a rate constant k = 40.0 at 300 K and an ER-7500 K. The feeds to the isothermal molmin flow reactor are both at 350 K and 5 atm. See the figure below. Stream 1 100% A Stream 3 Stream 2 90% B 10% Stream 1. consisting of pure A will be fod at a rate of 25 mol/see while Stream 2 consists of 90 moleBand 10. mol's inert gas. Please note that B is fed to the reactor in 5% excess. The reaction occurs at 350 K and the required conversion of A is 85% a) Solve for the individual molar flows in Streamis 2 and 3. (F: - 29.2 mol/sec, F = 32.9 mol/see) b) Determine the size required for a CSTR operating at constant pressure (1700 liters) c) Determine the size required for a PFR operating at constant pressure. While doing this problem do not solve! Set up the equations necessary to solve ou pape 2. d) How would you solve this problem if intend the PFR in parte has a pressure drop represented by a 0.001. Discuss any changes topuited to the options developed in pute e) Sketci V vor X for questions and on the included figurope 3. Clearly highlight any expected differences (if any). ChE32113

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