A gas mixture containing CH4 (g) used as fuel is obtained as follows. 4CO (g) + 8H2 (g) → 3CH4 (g) + CO2 (g) + 2H2O (s) Find the H ° for this reaction, using the following data as required. C (graphite) + 1 / 2O2 (g) → CO (g) ∆H ° = -110.5 kJ CO (g) + 1 / 2O2 (g) → CO2 (g) ∆H ° = - 283.0 kJ H2 (g) + 1 / 2O2 (g) → H2O (s) ∆H ° = -285,8kJ C (graphite) + 2H2 (g) → CH4 (g) ∆H ° = -74.81 kJ CH4 (g) + 2O2 (g)) → CO2 (g) + 2H2O (s) ∆H ° = -890,3kJ
A gas mixture containing CH4 (g) used as fuel is obtained as follows. 4CO (g) + 8H2 (g) → 3CH4 (g) + CO2 (g) + 2H2O (s) Find the H ° for this reaction, using the following data as required. C (graphite) + 1 / 2O2 (g) → CO (g) ∆H ° = -110.5 kJ CO (g) + 1 / 2O2 (g) → CO2 (g) ∆H ° = - 283.0 kJ H2 (g) + 1 / 2O2 (g) → H2O (s) ∆H ° = -285,8kJ C (graphite) + 2H2 (g) → CH4 (g) ∆H ° = -74.81 kJ CH4 (g) + 2O2 (g)) → CO2 (g) + 2H2O (s) ∆H ° = -890,3kJ
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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A gas mixture containing CH4 (g) used as fuel is obtained as follows.
4CO (g) + 8H2 (g) → 3CH4 (g) + CO2 (g) + 2H2O (s)
Find the H ° for this reaction, using the following data as required.
C (graphite) + 1 / 2O2 (g) → CO (g) ∆H ° = -110.5 kJ
CO (g) + 1 / 2O2 (g) → CO2 (g) ∆H ° = - 283.0 kJ
H2 (g) + 1 / 2O2 (g) → H2O (s) ∆H ° = -285,8kJ
C (graphite) + 2H2 (g) → CH4 (g) ∆H ° = -74.81 kJ
CH4 (g) + 2O2 (g)) → CO2 (g) + 2H2O (s) ∆H ° = -890,3kJ
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