In Ammonia production, a reactor is supplied with a feed of 100L of N2 and 400L of H2 both at 22 atm and 4200C. If the reaction is 95% complete (base on limiting reactant): a. Which is the limiting reactant? b. What is the number of moles of H2 remaining after the reaction? c. What is the number of moles of N2 remaining after the reaction? d. What is the percent conversion of N2? e. What is the number of moles of NH3 after the reaction?

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
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In Ammonia production, a reactor is supplied with a feed of 100L of N2 and 400L of H2 both at 22 atm and
4200C. If the reaction is 95% complete (base on limiting reactant):
a. Which is the limiting reactant?
b. What is the number of moles of H2 remaining after the reaction?
c. What is the number of moles of N2 remaining after the reaction?
d. What is the percent conversion of N2?
e. What is the number of moles of NH3 after the reaction?

In Ammonia production, a reactor is supplied with a feed of 100L of N2 an
420°C. If the reaction is 95% complete (base on limiting reactant):
a. Which is the limiting reactant?
b. What is the number of moles of Hz remaining after the reaction?
c. What is the number of moles of N2 remaining after the reaction?
d. What is the percent conversion of N2?
e. What is the number of moles of NH, after the reaction?
Transcribed Image Text:In Ammonia production, a reactor is supplied with a feed of 100L of N2 an 420°C. If the reaction is 95% complete (base on limiting reactant): a. Which is the limiting reactant? b. What is the number of moles of Hz remaining after the reaction? c. What is the number of moles of N2 remaining after the reaction? d. What is the percent conversion of N2? e. What is the number of moles of NH, after the reaction?
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