6. A hydrocarbon is burned with dry air. There is no atomic oxygen or water in the fuel. Analysis of the flue gas from a power plant results in the following mole percentages on a dry basis: 83.7% nitrogen, 8.83% carbon dioxide, 6.1% oxygen, and 1.33% carbon monoxide. The mole fraction of water in the total flue gas is equal to 0.113. Calculate the molar ratio of H to C in the fuel and the alkane to which that ratio corresponds.

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
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6.
A hydrocarbon is burned with dry air. There is no atomic oxygen or water in the fuel. Analysis of the
flue gas from a power plant results in the following mole percentages on a dry basis: 83.7% nitrogen,
8.83% carbon dioxide, 6.1% oxygen, and 1.33% carbon monoxide. The mole fraction of water in the
total flue gas is equal to 0.113.
Calculate the molar ratio of H to C in the fuel and the alkane to which that ratio corresponds.
Transcribed Image Text:6. A hydrocarbon is burned with dry air. There is no atomic oxygen or water in the fuel. Analysis of the flue gas from a power plant results in the following mole percentages on a dry basis: 83.7% nitrogen, 8.83% carbon dioxide, 6.1% oxygen, and 1.33% carbon monoxide. The mole fraction of water in the total flue gas is equal to 0.113. Calculate the molar ratio of H to C in the fuel and the alkane to which that ratio corresponds.
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