An inventor thinks he has developed a new catalyst which can make the gas phase reaction CO2+4H2CH4+2H2O proceed to 100% conversion. Estimate the heat must be provided or if the reactants enter and product leaves at 500 °C (in effect you have to calculate heat of reaction at 500 °C )Data provided Δ Hfat 298k (in Kcal/kmol) CO2 : − 94, 052 ; CH4: − 17,789 ; H2O: − 57,798Cp(in Kcal/kmol K)CO2 : 6.339+10.14×10-3T−3.464×10-6 T2CH4 : 6.424+1.039×10-3T−0.078×10-6 T2H2: 6.97+3.464×10-3T−0.483×10-6 T2H2O: 3.204+18.41×10-3T−4.48×10-6 T2 where T is K
An inventor thinks he has developed a new catalyst which can make the gas phase reaction CO2+4H2CH4+2H2O proceed to 100% conversion. Estimate the heat must be provided or if the reactants enter and product leaves at 500 °C (in effect you have to calculate heat of reaction at 500 °C )Data provided Δ Hfat 298k (in Kcal/kmol) CO2 : − 94, 052 ; CH4: − 17,789 ; H2O: − 57,798Cp(in Kcal/kmol K)CO2 : 6.339+10.14×10-3T−3.464×10-6 T2CH4 : 6.424+1.039×10-3T−0.078×10-6 T2H2: 6.97+3.464×10-3T−0.483×10-6 T2H2O: 3.204+18.41×10-3T−4.48×10-6 T2 where T is K
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
Section: Chapter Questions
Problem 1.1P
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An inventor thinks he has developed a new catalyst which can make the gas phase reaction CO2+4H2CH4+2H2O proceed to 100% conversion. Estimate the heat must be provided or if the reactants enter and product leaves at 500 °C (in effect you have to calculate heat of reaction at 500 °C )Data provided Δ Hfat 298k (in Kcal/kmol) CO2 : − 94, 052 ; CH4: − 17,789 ; H2O: − 57,798Cp(in Kcal/kmol K)CO2 : 6.339+10.14×10-3T−3.464×10-6 T2CH4 : 6.424+1.039×10-3T−0.078×10-6 T2H2: 6.97+3.464×10-3T−0.483×10-6 T2H2O: 3.204+18.41×10-3T−4.48×10-6 T2 where T is K
![An inventor thinks he has developed a new catalyst which can make the gas phase reaction
CO2+4H2
CH4+2H2O proceed to 100% conversion. Estimate the heat must be provided
or if the reactants enter and product leaves at 500 °C (in effect you have to calculate heat of
reaction at 500 °C )
Data provided
A Hf at 298k (in Kcal/kmol) CO2: - 94, 052 ; CH4: – 17,789 ;H2O: – 57,798
Cp (in Kcal/kmol K)
CO2: 6.339+10.14×10³T–3.464×10-6 T²
CH4 : 6.424+1.039×10-³T–0.078×10-6 T²
H2: 6.97+3.464×10³T–0.483×10-6 T²
H2O: 3.204+18.41×10³T-4.48×10-6 T² where T is K](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8517c8d6-9710-4486-ae82-524d5c99e0b2%2Fefb6b407-56a7-44a6-aebd-a663657347d4%2F3hznyy_processed.png&w=3840&q=75)
Transcribed Image Text:An inventor thinks he has developed a new catalyst which can make the gas phase reaction
CO2+4H2
CH4+2H2O proceed to 100% conversion. Estimate the heat must be provided
or if the reactants enter and product leaves at 500 °C (in effect you have to calculate heat of
reaction at 500 °C )
Data provided
A Hf at 298k (in Kcal/kmol) CO2: - 94, 052 ; CH4: – 17,789 ;H2O: – 57,798
Cp (in Kcal/kmol K)
CO2: 6.339+10.14×10³T–3.464×10-6 T²
CH4 : 6.424+1.039×10-³T–0.078×10-6 T²
H2: 6.97+3.464×10³T–0.483×10-6 T²
H2O: 3.204+18.41×10³T-4.48×10-6 T² where T is K
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