The liquid phase reaction ammonia-formaldehyde reacts as the reactant in an isothermal, constant volume batch reactor for the production of hexamine. 4NH: + 6H:CO - (CH:).N« + 6H:0 The reaction rate is -r=k.CNHS.Crzco, k=355.ea0/m, 4.06 M NH3 and 6.32 M H2CO are fed into the reactor. a) Construct the stoichiometry table. b) Find the concentration of H:CO at 99% conversion. c) At what temperature will the conversion of NH3 be 80% in 0.5 min?

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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QUESTION-2:
The liquid phase reaction ammonia-formaldehyde reacts as the reactant in an isothermal,
constant volume batch reactor for the production of hexamine.
4NH3 + 6H:CO (CH:) Na + 6H20
(-3090/T)
The reaction rate is -r=k.CNH3. Crzco, k=355.e
4.06 M NH3 and 6.32 M H2CO are fed into
the reactor.
a) Construct the stoichiometry table.
b) Find the concentration of H:CO at 99% conversion.
c) At what temperature will the conversion of NH: be 80% in 0.5 min?
Transcribed Image Text:QUESTION-2: The liquid phase reaction ammonia-formaldehyde reacts as the reactant in an isothermal, constant volume batch reactor for the production of hexamine. 4NH3 + 6H:CO (CH:) Na + 6H20 (-3090/T) The reaction rate is -r=k.CNH3. Crzco, k=355.e 4.06 M NH3 and 6.32 M H2CO are fed into the reactor. a) Construct the stoichiometry table. b) Find the concentration of H:CO at 99% conversion. c) At what temperature will the conversion of NH: be 80% in 0.5 min?
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