A combustor uses H2 gas and oxygen gas (02) as reactants. The equivalence ration is 0.3. Both reactants enter at 25°C and 0.1 MPa. The exit temperature and pressure are 800 K and 0.1 MPa respectively. The H2 gas is injected at a rate of 0.6 kg/sec. The magnitude of heat transfer rate is (in MJ/sec): O a. 30 O b. 40 O. 50 O d. 60 O e. 70

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A combustor uses H2 gas and oxygen gas (02) as reactants. The equivalence ration is 0.3. Both reactants enter at 25°C and 0.1 MPa. The exit
temperature and pressure are 800 K and 0.1 MPa respectively.
The H2 gas is injected at a rate of 0.6 kg/sec.
The magnitude of heat transfer rate is (in MJ/sec):
O a. 30
O b. 40
O. 50
O d. 60
O e. 70
Transcribed Image Text:A combustor uses H2 gas and oxygen gas (02) as reactants. The equivalence ration is 0.3. Both reactants enter at 25°C and 0.1 MPa. The exit temperature and pressure are 800 K and 0.1 MPa respectively. The H2 gas is injected at a rate of 0.6 kg/sec. The magnitude of heat transfer rate is (in MJ/sec): O a. 30 O b. 40 O. 50 O d. 60 O e. 70
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