Ammonia gas enters the reactor of a nitric acid plant mixed with 30% more dry air than is required for the complete conversion of the ammonia to nitric oxide and water vapor. If the gases enter the reactor at 75°C, if the conversion is 80%, if no side reaction occurs, and if the reactor operates adiabatically, what is the temperature of the gases leaving the reactor? Assume ideal gases. Reaction: 4NH, 3(g) + 50 2(g) - NO (g) + 6H,0 9) 2 (g)

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
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Ammonia gas enters the reactor of a nitric acid plant mixed with 30% more dry air
than is required for the complete conversion of the ammonia to nitric oxide and
water vapor. If the gases enter the reactor at 75°C, if the conversion is 80%, if no side
reaction occurs, and if the reactor operates adiabatically, what is the temperature of
the gases leaving the reactor? Assume ideal gases.
Reaction: 4NH
3(g)
+ 50.
2(g)
+ 6H 0 9)
→ NO
(g)
Transcribed Image Text:Ammonia gas enters the reactor of a nitric acid plant mixed with 30% more dry air than is required for the complete conversion of the ammonia to nitric oxide and water vapor. If the gases enter the reactor at 75°C, if the conversion is 80%, if no side reaction occurs, and if the reactor operates adiabatically, what is the temperature of the gases leaving the reactor? Assume ideal gases. Reaction: 4NH 3(g) + 50. 2(g) + 6H 0 9) → NO (g)
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