P1) Reaction is Irreversible in Gas Phase in Tubular Reactor. T = Constant & Ignore Pressure Drops. Feed ● ● 3Y₁+4Y₂ - 3Y3 + 4Y4 Volumetric Flowrate=2400: Concentration of Y₁ = h 5.0 gmol 5.0: L Concentration of Y₂ = 7.0 gmol L Concentration of Inerts = 3.0 gmol L Q1) Determine the limiting reactant for the given system & 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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P1)
Reaction is Irreversible in Gas Phase in Tubular Reactor...
T = Constant & Ignore Pressure Drops.
Feed
●
3Y₁ +4Y₂ → 3Y3 +4Y4
Volumetric Flowrate 2400 ²/
h
=
Concentration of Y₁ = 5.0 gmol
L
Concentration of Y₂ = 7.0 gmol
L
Concentration of Inerts
= 3.0 gmol
L
Q1) Determine the limiting reactant for the given system & reaction.
Transcribed Image Text:P1) Reaction is Irreversible in Gas Phase in Tubular Reactor... T = Constant & Ignore Pressure Drops. Feed ● 3Y₁ +4Y₂ → 3Y3 +4Y4 Volumetric Flowrate 2400 ²/ h = Concentration of Y₁ = 5.0 gmol L Concentration of Y₂ = 7.0 gmol L Concentration of Inerts = 3.0 gmol L Q1) Determine the limiting reactant for the given system & reaction.
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