The liquid-phase, elementary, exothermic reaction A → B is carried out in a 10 L CSTR with a cooling coil. Pure A enters the reactor at 100 mol/min and 1 L/min. Data: KA 0.0016 min at 400 K, EA = = = CP,A CP,B 20 cal/mol·K, T₁ = 450 K. 25 kcal/mol, UA = 4000 cal/min K, AHRx = -6,000 cal/mol, a) Construct an ignition-extinction plot for this system. b) For an entering feed of 340 K, how many steady-state reactor temperatures are there and what are they? c) What are the inlet extinction and ignition temperatures for this system?

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
Chapter1: Introduction
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The liquid-phase, elementary, exothermic reaction A → B is carried out in a 10 L CSTR with a
cooling coil. Pure A enters the reactor at 100 mol/min and 1 L/min.
Data: KA 0.0016 min at 400 K, EA
=
=
=
CP,A CP,B 20 cal/mol·K, T₁ = 450 K.
25 kcal/mol, UA = 4000 cal/min K, AHRx = -6,000 cal/mol,
a) Construct an ignition-extinction plot for this system.
b) For an entering feed of 340 K, how many steady-state reactor temperatures are there and
what are they?
c) What are the inlet extinction and ignition temperatures for this system?
Transcribed Image Text:The liquid-phase, elementary, exothermic reaction A → B is carried out in a 10 L CSTR with a cooling coil. Pure A enters the reactor at 100 mol/min and 1 L/min. Data: KA 0.0016 min at 400 K, EA = = = CP,A CP,B 20 cal/mol·K, T₁ = 450 K. 25 kcal/mol, UA = 4000 cal/min K, AHRx = -6,000 cal/mol, a) Construct an ignition-extinction plot for this system. b) For an entering feed of 340 K, how many steady-state reactor temperatures are there and what are they? c) What are the inlet extinction and ignition temperatures for this system?
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