Liquid octane at 25°C is burned with 350% theoretical air at 25°C in a steady-flow process. Determine the adiabatic flame temperature. Take enthalpy of formation, h, of liquid Octane, CO, and H,O are – 250105, – 393522, – 241826 kJ/kmol respectively. TК) ДСО, (kJkmol) ДhН,0 (kJkmol) - AhO, (kJ/kmol) AhN, (kJ/kmol) 900 28030 21892 19249 18222 1000 33400 25956 22710 21461

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Liquid octane at 25°C is burned with 350% theoretical air at 25°C in a steady-flow
process. Determine the adiabatic flame temperature. Take enthalpy of formation,
h, of liquid Octane, CO, and H,0 are – 250105, – 393522, – 241826 kJ/kmol
respectively.
T(K) A½CO, (kJ/kmol) AhH,O (kJ/kmol)
AhO, (kJ/kmol) AhN, (kJ/kmol)
900
28030
21892
19249
18222
1000
33400
25956
22710
21461
Transcribed Image Text:Liquid octane at 25°C is burned with 350% theoretical air at 25°C in a steady-flow process. Determine the adiabatic flame temperature. Take enthalpy of formation, h, of liquid Octane, CO, and H,0 are – 250105, – 393522, – 241826 kJ/kmol respectively. T(K) A½CO, (kJ/kmol) AhH,O (kJ/kmol) AhO, (kJ/kmol) AhN, (kJ/kmol) 900 28030 21892 19249 18222 1000 33400 25956 22710 21461
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