CO product gas H20 Determine the gas composition and the temperature of the product gas if the feed contains 2 moles/s of H20 and 1 mole/s of CO @ 100 C and 1 bar and 50% of CO is converted to CO2. Assume the reactor is insulated. CO(g)+H20 (g) H2 (g)+ CO2 (g) AHif298-CO21° =-393,509 AHf298-H2o =0 A HJf298-COro -110,525 AHF298-H201 =-241,818 CIP-CO2 -4.5R CLP-H2O -4R CLPL-H2 3.5R CLP-CO 3.5R

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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CO
product gas
H20
Determine the gas composition and the temperature of the product gas if
the feed contains 2 moles/s of H20 and 1 mole/s of CO @ 100 C and 1 bar
and 50% of CO is converted to CO2. Assume the reactor is insulated.
CO(g)+H20 (g) H2 (g)+ CO2 (g)
AHif298-CO21° =-393,509 AHf298-H2o =0 A
HJf298-COro
-110,525 AHF298-H201
=-241,818
CIP-CO2 -4.5R
CLP-H2O -4R
CLPL-H2 3.5R CLP-CO 3.5R
Transcribed Image Text:CO product gas H20 Determine the gas composition and the temperature of the product gas if the feed contains 2 moles/s of H20 and 1 mole/s of CO @ 100 C and 1 bar and 50% of CO is converted to CO2. Assume the reactor is insulated. CO(g)+H20 (g) H2 (g)+ CO2 (g) AHif298-CO21° =-393,509 AHf298-H2o =0 A HJf298-COro -110,525 AHF298-H201 =-241,818 CIP-CO2 -4.5R CLP-H2O -4R CLPL-H2 3.5R CLP-CO 3.5R
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