Example 2: A hydrocarbon fuel, which has the general form (CnH2n+2) is mixed with pure - Oxygen with two different equivalence ratios as the two reactions below: 1) CxHy + 502→bCO2 + dH2O + f02 2) CxHya02 →cCO + dH20 (Lean condition) at Ocut (Rich condition) For reaction1, the total moles of products are 6.5moles. For reaction 2, the mole fraction of CO in products is, Find: 1) Type of fuel 2) equivalence ratio for both above reactions.

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
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Example 2: A hydrocarbon fuel, which has the general form (CnH2n+2) is
mixed with pure - Oxygen with two different equivalence ratios as the
two reactions below:
1) CxHy + 502→bCO2 + dH2O + f02
2) CxHya02 →cCO + dH20
(Lean condition)
at Ocut (Rich condition)
For reaction1, the total moles of products are 6.5moles. For reaction 2,
the mole fraction of CO in products is, Find:
1) Type of fuel
2) equivalence ratio for both above reactions.
Transcribed Image Text:Example 2: A hydrocarbon fuel, which has the general form (CnH2n+2) is mixed with pure - Oxygen with two different equivalence ratios as the two reactions below: 1) CxHy + 502→bCO2 + dH2O + f02 2) CxHya02 →cCO + dH20 (Lean condition) at Ocut (Rich condition) For reaction1, the total moles of products are 6.5moles. For reaction 2, the mole fraction of CO in products is, Find: 1) Type of fuel 2) equivalence ratio for both above reactions.
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