Q1. The gas-phase Reaction: 1/2 N₂ + 3/2 H₂ NH3 Is to be carried out isothermally. The molar feed is 60% H₂ and 40 %N2, at a pressure of 18 atm and 230 °C. (a) Construct a complete Stoichiometric table. (b) Find CAO, 8 and E? (c) Calculate the concentration of Ammonia and Hydrogen when the conversion of H₂ is 65 %?

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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Q1. The gas-phase Reaction:
1/2 N2 + 3/2 H₂
NH3
Is to be carried out isothermally. The molar feed is 60% H₂ and 40 %N2, at a pressure of 18 atm and 230
°C.
(a) Construct a complete Stoichiometric table.
(b) Find CAO, 8 and E?
(c) Calculate the concentration of Ammonia and Hydrogen when the conversion of H₂ is 65 %?
(d) Suppose by chance, the reaction is elementary with KN2 = 50 dm³/mol/s. Write the Rate of
Reaction solely as function of conversion for:
1. Flow System
2. Constant Volume batch system.
Transcribed Image Text:Q1. The gas-phase Reaction: 1/2 N2 + 3/2 H₂ NH3 Is to be carried out isothermally. The molar feed is 60% H₂ and 40 %N2, at a pressure of 18 atm and 230 °C. (a) Construct a complete Stoichiometric table. (b) Find CAO, 8 and E? (c) Calculate the concentration of Ammonia and Hydrogen when the conversion of H₂ is 65 %? (d) Suppose by chance, the reaction is elementary with KN2 = 50 dm³/mol/s. Write the Rate of Reaction solely as function of conversion for: 1. Flow System 2. Constant Volume batch system.
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