air (O2+3.76N2) supplied at the same pressure and temperature. Assume that there is 10% ess air than stoichiometric conditions. Write the chemical reaction equation for the combustion of propane with 10% excess air (a=1.1*a,toich)- If the combustion is not complete, the products may contain CO2, H20, CO, H2, O2 and N2. Rewrite the chemical reaction equation you found in part 1 to include these products. Also, express the relationships between the moles of product species using atom balances. Calculate the adiabatic flame temperature and equilibrium composition. To minimize the iterative steps, make a first guess of 2200 K and a second guess of 2750K. Do this problem by hand, but you may use combustion codes to check your work.

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3. Propane (C3Hs) gas supplied at 1 atm and 298.15K is burned adiabatically in steady-flow burner
with air (O2+3.76N2) supplied at the same pressure and temperature. Assume that there is 10%
excess air than stoichiometric conditions.
a. Write the chemical reaction equation for the combustion of propane with 10% excess air
(a=1.1*a,toich).
b. If the combustion is not complete, the products may contain CO2, H20, CO, H2, Oz and N2.
Rewrite the chemical reaction equation you found in part 1 to include these products. Also,
express the relationships between the moles of product species using atom balances.
c. Calculate the adiabatic flame temperature and equilibrium composition. To minimize the
iterative steps, make a first guess of 2200 K and a second guess of 2750K. Do this problem
by hand, but you may use combustion codes to check your work.
Transcribed Image Text:3. Propane (C3Hs) gas supplied at 1 atm and 298.15K is burned adiabatically in steady-flow burner with air (O2+3.76N2) supplied at the same pressure and temperature. Assume that there is 10% excess air than stoichiometric conditions. a. Write the chemical reaction equation for the combustion of propane with 10% excess air (a=1.1*a,toich). b. If the combustion is not complete, the products may contain CO2, H20, CO, H2, Oz and N2. Rewrite the chemical reaction equation you found in part 1 to include these products. Also, express the relationships between the moles of product species using atom balances. c. Calculate the adiabatic flame temperature and equilibrium composition. To minimize the iterative steps, make a first guess of 2200 K and a second guess of 2750K. Do this problem by hand, but you may use combustion codes to check your work.
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