Q4/ Calculate the standard heat of reaction for the conversion of cyclohexane to benzene: C6H12(g) → C6H6(g) + 3H₂(g) If the reactor for the conversion operates at 70% conversion of C6H12, what is the heat removed from or added to the reactor if the exit gases leave at 300°C and the entering materials consist of C6H₁2 together with one-half mole of N₂ per mole of C6H12, both at 25° C? Component CPm(300-25) AH (J/gmol) H₂(g) 29.2 C6H6(g) 68.45 +82.927×10³ C6H12(g) 128.75 - 123.1×10³ N₂(g) 29.2

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Q4/ Calculate the standard heat of reaction for the conversion of cyclohexane to benzene:
C6H12(g)
C6H6(g) + 3H₂(g)
If the reactor for the conversion operates at 70% conversion of C6H12, what is the heat
removed from or added to the reactor if the exit gases leave at 300°C and the entering
materials consist of C6H12 together with one-half mole of N₂ per mole of C6H12, both at 25⁰
C?
Component
CPm(300-25)
AH (J/gmol)
H₂(g)
29.2
C6H6(g)
68.45
+82.927×10³
- 123.1×10³
C6H12(g)
128.75
N₂(g)
29.2
Transcribed Image Text:Q4/ Calculate the standard heat of reaction for the conversion of cyclohexane to benzene: C6H12(g) C6H6(g) + 3H₂(g) If the reactor for the conversion operates at 70% conversion of C6H12, what is the heat removed from or added to the reactor if the exit gases leave at 300°C and the entering materials consist of C6H12 together with one-half mole of N₂ per mole of C6H12, both at 25⁰ C? Component CPm(300-25) AH (J/gmol) H₂(g) 29.2 C6H6(g) 68.45 +82.927×10³ - 123.1×10³ C6H12(g) 128.75 N₂(g) 29.2
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