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use eav= (U-U0)+P0(V-V0)-T0(S-S0)+ Eavchemical for the available energy calculation. explain each step Carbon monoxide at 25C and 1 atm enters an insulated reactor operating at

use eav= (U-U0)+P0(V-V0)-T0(S-S0)+ Eavchemical for the available energy calculation. explain each step image text in transcribed
Carbon monoxide at 25C and 1 atm enters an insulated reactor operating at steady state and reacts completeley with the theoretical amount of air entering in a separate stream at 25C and 1atm. The product stream exits at 2665K and 1atm Environmental conditions are given as follows: T0=298K,P0=1atm, and gas phase composition: Neglecting KE and PE terms, determine in kJ per kmol of CO : (15%) (a) The available energy (thermomechanical+chemical) entering with CO. (10%) (b) The available energy exiting with combustion products per mole of CO entering. (10%) (c) The rate of available energy destruction per mole of CO entering. Evaluate: (8%)( d) An available energy efficiency for the reactor. Explain with necessary equations nithout performing any calculations: (7%)(e) How would you calculate the temperature of combustion products (2665K), if it were not given? Carbon monoxide at 25C and 1 atm enters an insulated reactor operating at steady state and reacts completeley with the theoretical amount of air entering in a separate stream at 25C and 1atm. The product stream exits at 2665K and 1atm Environmental conditions are given as follows: T0=298K,P0=1atm, and gas phase composition: Neglecting KE and PE terms, determine in kJ per kmol of CO : (15%) (a) The available energy (thermomechanical+chemical) entering with CO. (10%) (b) The available energy exiting with combustion products per mole of CO entering. (10%) (c) The rate of available energy destruction per mole of CO entering. Evaluate: (8%)( d) An available energy efficiency for the reactor. Explain with necessary equations nithout performing any calculations: (7%)(e) How would you calculate the temperature of combustion products (2665K), if it were not given

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