Nitric oxide (NO, MW = 30.1) reacts completely with gas phase water to form ammonia (NH3) and oxygen gas. The reactants are fed in a stoichiometric ratio at 155 °C and leave at 232.00 °C. The feed rate of NO is 2.35 g/s. Species NO AH (25 °C) kJ/mol Ср 90.4 3.5R H₂O(g) -241.8 5R NH2(g) -46.2 4.5R 02 0 3.5R Calculate the heat interaction term. 190.78 Q = Incorrect kW

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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Nitric oxide (NO, MW = 30.1) reacts completely with gas phase water to form ammonia (NH3) and oxygen gas. The reactants
are fed in a stoichiometric ratio at 155 °C and leave at 232.00 °C. The feed rate of NO is 2.35 g/s.
Species
NO
AH (25 °C) kJ/mol
Ср
90.4
3.5R
H₂O(g)
-241.8
5R
NH2(g)
-46.2
4.5R
02
0
3.5R
Calculate the heat interaction term.
190.78
Q =
Incorrect
kW
Transcribed Image Text:Nitric oxide (NO, MW = 30.1) reacts completely with gas phase water to form ammonia (NH3) and oxygen gas. The reactants are fed in a stoichiometric ratio at 155 °C and leave at 232.00 °C. The feed rate of NO is 2.35 g/s. Species NO AH (25 °C) kJ/mol Ср 90.4 3.5R H₂O(g) -241.8 5R NH2(g) -46.2 4.5R 02 0 3.5R Calculate the heat interaction term. 190.78 Q = Incorrect kW
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