5. The liquid phase reaction, A+B C follows an elementary rate law and is carried out isothermally in a flow system. The concentrations of A and B feed streams are 2 M before mixing. The volumetric flow rate of each stream is 5 dm³/min, and the entering temperature is 300 K. The streams are mixed immediately before entering. Two reactors are available. One is a gray, 200 dm³ CSTR that can be heated to 77°C or cooled to 0°C, and the other is a white 800 dm³ PFR operated at 300 K that cannot be heated or cooled but can be painted red or black. Note that k = 0.07 dm³/mol.min at 300 K and E= 20 kcal/mol. (4,2) Which reactor and what conditions do you recommend? Explain the reason for your choice (color, cost, space available, weather conditions.) Show all the appropriate calculations and steps that you would follow in a typical isothermal reactor design problem. b. What conversion would be obtained if the CSTR and PFR were operated at 300 K and connected in series? a.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Microsoft Office Ho...
th Moodle Google Drive
GitHub- DS303-20
I ing t
Microsoft Teams
WhatsApp
Welcome to ASC!
(1) WebMail-SS01 L.
Placements, IWT B...
+ 田の
2/2
128%
d. What PFR volume must be added to the first CSTR (part b) to raise the conversion to 80%?
e. What conversion can be achieved in a 6 x 104 m³ PFR?
5. The liquid phase reaction,
A + B C
follows an elementary rate law and is carried out isothermally in a flow system. The concentrations of A
and B feed streams are 2 M before mixing. The volumetric flow rate of each stream is 5 dm/min, and the
entering temperature is 300 K. The streams are mixed immediately before entering. Two reactors are
available. One is a gray, 200 dm' CSTR that can be heated to 77°C or cooled to 0°C, and the other is a
white 800 dm PFR operated at 300 K that cannot be heated or cooled but can be painted red or black.
Note that k = 0.07 dm/mol.min at 300 K and E= 20 kcal/mol. (4,2)
you recommend? Explain the reason for your choice (color,
a. Which reactor and what conditions do
cost, space available, weather conditions.) Show all the appropriate calculations and steps that
you would follow in a typical isothermal reactor design problem.
b. What conversion would be obtained if the CSTR and PFR were operated at 300K and connected
in series?
Transcribed Image Text:Microsoft Office Ho... th Moodle Google Drive GitHub- DS303-20 I ing t Microsoft Teams WhatsApp Welcome to ASC! (1) WebMail-SS01 L. Placements, IWT B... + 田の 2/2 128% d. What PFR volume must be added to the first CSTR (part b) to raise the conversion to 80%? e. What conversion can be achieved in a 6 x 104 m³ PFR? 5. The liquid phase reaction, A + B C follows an elementary rate law and is carried out isothermally in a flow system. The concentrations of A and B feed streams are 2 M before mixing. The volumetric flow rate of each stream is 5 dm/min, and the entering temperature is 300 K. The streams are mixed immediately before entering. Two reactors are available. One is a gray, 200 dm' CSTR that can be heated to 77°C or cooled to 0°C, and the other is a white 800 dm PFR operated at 300 K that cannot be heated or cooled but can be painted red or black. Note that k = 0.07 dm/mol.min at 300 K and E= 20 kcal/mol. (4,2) you recommend? Explain the reason for your choice (color, a. Which reactor and what conditions do cost, space available, weather conditions.) Show all the appropriate calculations and steps that you would follow in a typical isothermal reactor design problem. b. What conversion would be obtained if the CSTR and PFR were operated at 300K and connected in series?
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