A liquid-phase reaction is to be carried out using two CSTRs in series. Reactant A enters CSTR 1 at a concentration of 1 mol/L and at a volumetric flow of 10 L/min. The reaction is second order in A with a rate law: -₁ = KC₂² with k = 1.05. a. What will be the overall conversion for the entire configuration if CSTR 1 has a volume of 50 L and CSTR 2 has a volume of 150 L? b. If the two CSTRs are replaced with a single CSTR whose volume is equal to the total volume of the original CSTRS, what will be the new overall conversion?

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A liquid-phase reaction is to be carried out using two CSTRs in series. Reactant A enters CSTR 1
at a concentration of 1 mol/L and at a volumetric flow of 10 L/min. The reaction is second order
in A with a rate law: -₁ = KC₂² with k = 1.05.
a.
What will be the overall conversion for the entire configuration if CSTR 1 has a volume of
50 L and CSTR 2 has a volume of 150 L?
b.
If the two CSTRS are replaced with a single CSTR whose volume is equal to the total
volume of the original CSTRS, what will be the new overall conversion?
Transcribed Image Text:A liquid-phase reaction is to be carried out using two CSTRs in series. Reactant A enters CSTR 1 at a concentration of 1 mol/L and at a volumetric flow of 10 L/min. The reaction is second order in A with a rate law: -₁ = KC₂² with k = 1.05. a. What will be the overall conversion for the entire configuration if CSTR 1 has a volume of 50 L and CSTR 2 has a volume of 150 L? b. If the two CSTRS are replaced with a single CSTR whose volume is equal to the total volume of the original CSTRS, what will be the new overall conversion?
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