When we burn natural gas to heat our homes we use the energy given off by the CH4(g) + 202(g) CO2(g) + 2H2O(g) A;H° = -802.3 kJ/gmol-rxn. If you are feeding 454 g/min methane at 25°C and combusting it with stoichiometric oxygen from air (79 mol% N2, 21 mol% O2), estimate the adiabatic flame temperature. O2 N2 O'H 29.1 CH4 CO2 Cprg) J/gmol·K 29.3 33.6 35.7 37.0

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Chapter1: Introduction
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When we burn natural gas to heat our homes we use the energy given off by the
CH4(g) + 202(g)
A;H° = -802.3 kJ/gmol-rxn.
(8)O°H7 + (8)O)
If you are feeding 454 g/min methane at 25°C and combusting it with stoichiometric oxygen from
air (79 mol% N2, 21 mol% O2), estimate the adiabatic flame temperature.
O°H
29.1
CH4
O2
CO2
N2
33.6
Cp(e) J/gmol·K
29.3
35.7
Transcribed Image Text:When we burn natural gas to heat our homes we use the energy given off by the CH4(g) + 202(g) A;H° = -802.3 kJ/gmol-rxn. (8)O°H7 + (8)O) If you are feeding 454 g/min methane at 25°C and combusting it with stoichiometric oxygen from air (79 mol% N2, 21 mol% O2), estimate the adiabatic flame temperature. O°H 29.1 CH4 O2 CO2 N2 33.6 Cp(e) J/gmol·K 29.3 35.7
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