5. Pure gaseous A at about 3 atm and 30°C (120 mmole/liter) is ted into a1 liter mixed tlow reactor at various flow rates. There it decomposes, and the exit concentration of A is measured for each flow rate. From the following data find a rate equation to represent the kinetics of the decomposition of A. Assume that reactant A alone affects the rate. A-3R

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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5. Pure gaseous A at about 3 atm and 30°C (120 mmole/liter) is fed into a 1 liter mixed flow reactor
at various flow rates. There it decomposes, and the exit concentration of A is measured for each flow
rate. From the following data find a rate equation to represent the kinetics of the decomposition of
A. Assume that reactant A alone affects the rate.
A 3R
8.1
Vo, liter/min
CA, mmole/liter
0.06
0.48
1.5
30
60
80
105
Transcribed Image Text:5. Pure gaseous A at about 3 atm and 30°C (120 mmole/liter) is fed into a 1 liter mixed flow reactor at various flow rates. There it decomposes, and the exit concentration of A is measured for each flow rate. From the following data find a rate equation to represent the kinetics of the decomposition of A. Assume that reactant A alone affects the rate. A 3R 8.1 Vo, liter/min CA, mmole/liter 0.06 0.48 1.5 30 60 80 105
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