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A+BC The reaction is liquid-phase, follows an elementary rate law, and is run in the reactor adiabatically. The feed inlet is equimolar in A and

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A+BC The reaction is liquid-phase, follows an elementary rate law, and is run in the reactor adiabatically. The feed inlet is equimolar in A and B, with an initial inlet feed temperature of 27C. The volumetric flow rate is 4L/sec, with inlet feed concentrations of 0.2mol/L of A and 0.2mol/L of B. a. For an 80% conversion, calculate the reactor volume that is needed and the temperature inside the reactor. b. The boiling point of C is 227C. In order for the reactor to never exceed this temperature even at 100% conversion, what the maximum temperature of the inlet feed? c. If you were to calculate the volume necessary for 80% conversion in a PFR with the same inlet conditions, would the PFR's volume be larger or smaller than the CSTR? Explain your reasoning. (Part c is a conceptual question; it's not necessary to do the calculation.) Other information: HA(273K)=22kcal/molHB(273K)=7kcal/molHC(273K)=35kcal/molCpA=25cal/molKCpB=25cal/molKCpC=50cal/molKk=0.02L/molsat300K(kistemperature-dependent)E=10,000cal/mol

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