13.Petrol is used as a fuel in one of the engines for the industry you are working for. It typically consists of 35% propane, 30% butane, 12% ethane, 16% ethylene, and 7% propylene. While you were doing your rounds, checking the

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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13.Petrol is used as a fuel in one of the engines for the
industry you are working for. It typically consists of 35%
propane, 30% butane, 12% ethane, 16% ethylene, and 7%
propylene. While you were doing your rounds, checking the
equipment, an operator told you that he thinks that the orsat
apparatus is broken. The exhaust gas analysis provided by the
apparatus seem to be fluctuating. In order to check if the
values of the apparatus is right, you decided to compute for
the theoretical values.
a. You assumed that the air used is provided 35% in excess.
What is the exhaust gas analysis theoretically?
b. Assuming that in a day, the machine uses 50 m3 of petrol
(p=780 kg/m3), how many m3 of exhaust gas (T=400°c, P=74 OmmHg)
is produced?
c. From (b), how much air (T=23°c, P=74 0mmHg, 70%RH) in m3 is
needed?
Transcribed Image Text:13.Petrol is used as a fuel in one of the engines for the industry you are working for. It typically consists of 35% propane, 30% butane, 12% ethane, 16% ethylene, and 7% propylene. While you were doing your rounds, checking the equipment, an operator told you that he thinks that the orsat apparatus is broken. The exhaust gas analysis provided by the apparatus seem to be fluctuating. In order to check if the values of the apparatus is right, you decided to compute for the theoretical values. a. You assumed that the air used is provided 35% in excess. What is the exhaust gas analysis theoretically? b. Assuming that in a day, the machine uses 50 m3 of petrol (p=780 kg/m3), how many m3 of exhaust gas (T=400°c, P=74 OmmHg) is produced? c. From (b), how much air (T=23°c, P=74 0mmHg, 70%RH) in m3 is needed?
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