OL: A liquid-phase reaction 2A B - C, takes place in a 10.0-liter continuous stirred-tank reactor. The reactor may be considered perfectly mixed, so that the contents are uniform and the concentrations of A, B and C in the product stream equal that inside the tank. (k=k=0.01 s') rate of reaction (1) - k,CA (mol /L.s) rate of reaction (2)- kC (mol /La) 10.0 mol AL 0.2Us Ca(mol BL) V = 10 L CAmol CL) Calmol A/L) 1- Write a balance equation on species A, B and Cin the tank and provide an initial conditions. 2- Calculate CA .C and Cc at the steady-state in the tank. 3- Calculate CA .C, Cc and after 10 s in the tank.

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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01: A liquid-phase reaction 2A B c, takes place in a 10.0-liter continuous
stirred-tank reactor. The reactor may be considered perfectly mixed, so that the contents
are uniform and the concentrations of A, B and C in the product stream equal that inside
the tank., (k-k;-0.01 s)
rate of reaction (1)-kCA (mol /L.s)
02 s
rate of reaction (2)- kCa (mol /La)
10.0 mol ML
0.2 Us
Camol BL)
V = 10 L
C(mol CL)
Calmol A/L)
1- Write a balance equation on species A, B
and Cin the tank and provide an initial conditions.
2- Calculate CA Ca and Cc at the steady-state in the tank.
3- Calculate CA .CR. Ce and after 10 s in the tank.
Transcribed Image Text:01: A liquid-phase reaction 2A B c, takes place in a 10.0-liter continuous stirred-tank reactor. The reactor may be considered perfectly mixed, so that the contents are uniform and the concentrations of A, B and C in the product stream equal that inside the tank., (k-k;-0.01 s) rate of reaction (1)-kCA (mol /L.s) 02 s rate of reaction (2)- kCa (mol /La) 10.0 mol ML 0.2 Us Camol BL) V = 10 L C(mol CL) Calmol A/L) 1- Write a balance equation on species A, B and Cin the tank and provide an initial conditions. 2- Calculate CA Ca and Cc at the steady-state in the tank. 3- Calculate CA .CR. Ce and after 10 s in the tank.
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