A burner burns a fuel gas with the following composition by volume, CO2 – 3% H2 – 40% O2 – 1% C6H14 – 10% CO – 33% N2 – 6% C6H6 – 1% CH2CH2 – 6% The fuel is fed to the burner at 300C and 1 atm. It is burned with 20% excess air at 300C and 1 atm. Assuming that combustion is complete, calculate the following: a. Moles of theoretical air per 100 mole of fuel b. %N2 in the Orsat Analysis c. % CO2 in the stack gas d. % water in the stack gas e. L of air per mole of fuel
A burner burns a fuel gas with the following composition by volume, CO2 – 3% H2 – 40% O2 – 1% C6H14 – 10% CO – 33% N2 – 6% C6H6 – 1% CH2CH2 – 6% The fuel is fed to the burner at 300C and 1 atm. It is burned with 20% excess air at 300C and 1 atm. Assuming that combustion is complete, calculate the following: a. Moles of theoretical air per 100 mole of fuel b. %N2 in the Orsat Analysis c. % CO2 in the stack gas d. % water in the stack gas e. L of air per mole of fuel
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 burner burns a fuel gas with the following composition by volume, CO2 – 3% H2 – 40% O2 – 1% C6H14 – 10% CO – 33% N2 – 6% C6H6 – 1% CH2CH2 – 6% The fuel is fed to the burner at 300C and 1 atm. It is burned with 20% excess air at 300C and 1 atm. Assuming that combustion is complete, calculate the following:
a. Moles of theoretical air per 100 mole of fuel
b. %N2 in the Orsat Analysis
c. % CO2 in the stack gas
d. % water in the stack gas
e. L of air per mole of fuel
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