A liquid phase reaction given: 1.75L 20L isothermal CSTR and is being charged with 2.00 mM of reactant A at a rate of and follows a rate min law of: -TA = KC1.50 Where CA is the concentration of reactant A, and k is the reaction constant. The reaction constant varies with the temperature according to the following Arrhenius type relationship: (mol-0.5 10.5 k min = 1000e- -1525 T If the reactor operates at T = 500K, what will be the steady state concentration of A?

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 given:
20L isothermal CSTR and is being charged with 2.00 mM of reactant A at a rate of and follows a rate
1.75L
min
law of:
-TA = KC1.50
Where CA is the concentration of reactant A, and k is the reaction constant. The reaction constant varies
with the temperature according to the following Arrhenius type relationship:
(mol-0.5 10.5
k
min
= 1000e
-1525
T
If the reactor operates at T = 500K, what will be the steady state concentration of A?
Transcribed Image Text:A liquid phase reaction given: 20L isothermal CSTR and is being charged with 2.00 mM of reactant A at a rate of and follows a rate 1.75L min law of: -TA = KC1.50 Where CA is the concentration of reactant A, and k is the reaction constant. The reaction constant varies with the temperature according to the following Arrhenius type relationship: (mol-0.5 10.5 k min = 1000e -1525 T If the reactor operates at T = 500K, what will be the steady state concentration of A?
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