One hundred mole NH3/s and 200 mole O2/s at 25 degrees C are fed into a reactor in which the ammonia is completely consumed. The product gas emerges at 300 degreesC. Calculate the rate at which heat must be transferred to or from the reactor, assuming operation at approximately 1 atm. The standard heat of reaction for the oxidation of ammonia is given below: NH3 (g) + 5O2 (g) → 4NO(g) + 6H2O(v); ΔHr^0= -904.7KJ(ΔHr^0-904.76KJ/s)
One hundred mole NH3/s and 200 mole O2/s at 25 degrees C are fed into a reactor in which the ammonia is completely consumed. The product gas emerges at 300 degreesC. Calculate the rate at which heat must be transferred to or from the reactor, assuming operation at approximately 1 atm. The standard heat of reaction for the oxidation of ammonia is given below: NH3 (g) + 5O2 (g) → 4NO(g) + 6H2O(v); ΔHr^0= -904.7KJ(ΔHr^0-904.76KJ/s)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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One hundred mole NH3/s and 200 mole O2/s at 25 degrees C are fed into a reactor in which the ammonia is completely consumed. The product gas emerges at 300 degreesC.
Calculate the rate at which heat must be transferred to or from the
reactor, assuming operation at approximately 1 atm. The standard heat of
reaction for the oxidation of ammonia is given below:
NH3 (g) + 5O2 (g) → 4NO(g) + 6H2O(v);
ΔHr^0= -904.7KJ(ΔHr^0-904.76KJ/s)
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