Stack gas analysis: 83.08%N2, 7.5%CO2, 2.3%CO, 1.12%H2, 6%O2 (at 400°C, 760 mmHg with a saturation temperature of 54°C). excess air supplied (at 28°C, 745 torr with 85%RH). The fuel is assumed to be a saturated hydrocarbon Answer the following: a) %excess of air if air is supplied ( at 1000 m^3) and stack gas produced ( at 3100 m^3). b) chemical formula of the fuel burned. c) analysis of the fuel mixture. (the fuel is actually not pure, and significant amount of nitrogen is present)
Stack gas analysis: 83.08%N2, 7.5%CO2, 2.3%CO, 1.12%H2, 6%O2 (at 400°C, 760 mmHg with a saturation temperature of 54°C). excess air supplied (at 28°C, 745 torr with 85%RH). The fuel is assumed to be a saturated hydrocarbon Answer the following: a) %excess of air if air is supplied ( at 1000 m^3) and stack gas produced ( at 3100 m^3). b) chemical formula of the fuel burned. c) analysis of the fuel mixture. (the fuel is actually not pure, and significant amount of nitrogen is present)
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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Stack gas analysis: 83.08%N2, 7.5%CO2, 2.3%CO, 1.12%H2, 6%O2 (at 400°C, 760 mmHg with a saturation temperature of 54°C).
excess air supplied (at 28°C, 745 torr with 85%RH). The fuel is assumed to be a saturated hydrocarbon
Answer the following:
a) %excess of air if air is supplied ( at 1000 m^3) and stack gas produced ( at 3100 m^3).
b) chemical formula of the fuel burned.
c) analysis of the fuel mixture. (the fuel is actually not pure, and significant amount of nitrogen is present)
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