---> U second order liquid reaction will be carried out to produce U in a reactor with %80 conversation. Reaction will start with a 4 m³ solution which has 2.3 mol/L concentration of А. Accordingly, with the help of the following information, If the reactor is operated at 363 K isotherm; Find the required reaction time and Infos: 1) Reaction velocity model: - rA=8.8x10°exp(-15500/RT) CA²; mol/ L st (R=1.987 cal/mol K) 2) Reaction enthalpy: - DH= 12,000 cal/mol 3) Heat-transfer coefficient for reactor with jacket: : U =130 cal/dm min °C 4) Average physical properties for reaction's mixture: CP =0.95 cal/g °C r=1.02 g/cm? Notes: 1 In standard mixing tank you can consider L = D

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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If the reactor is operated at 363 K isoterm; find the required reaction time

A ---> U second order liquid reaction will be
carried out to produce U in a reactor with %80
conversation. Reaction will start with a 4
m³ solution which has 2.3 mol/L concentration of
A.
Accordingly, with the help of the following
information,
If the reactor is operated at 363 K isotherm;
Find the required reaction time and
Infos:
1) Reaction velocity model: -
rA=8.8x10°exp(-15500/RT) CA?; mol/
L st (R=1.987 cal/mol K)
2) Reaction enthalpy: - DH= 12,000 cal/mol
3) Heat-transfer coefficient for reactor with
jacket: : U =130 cal/dm? min °C
4) Average physical properties for reaction's
mixture: CP =0.95 cal/g °C
r=1.02 g/cm?
Notes:
1 In standard mixing tank you can consider L=
D
Transcribed Image Text:A ---> U second order liquid reaction will be carried out to produce U in a reactor with %80 conversation. Reaction will start with a 4 m³ solution which has 2.3 mol/L concentration of A. Accordingly, with the help of the following information, If the reactor is operated at 363 K isotherm; Find the required reaction time and Infos: 1) Reaction velocity model: - rA=8.8x10°exp(-15500/RT) CA?; mol/ L st (R=1.987 cal/mol K) 2) Reaction enthalpy: - DH= 12,000 cal/mol 3) Heat-transfer coefficient for reactor with jacket: : U =130 cal/dm? min °C 4) Average physical properties for reaction's mixture: CP =0.95 cal/g °C r=1.02 g/cm? Notes: 1 In standard mixing tank you can consider L= D
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