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Ethanol was oxidised to acetic acid in a...

Ethanol was oxidised to acetic acid in a catalyst chamber at `18^(@)C`. Calculate the rate of removel of heat to maintain the reaction chamber at `18^(@)C` with the feed rate of `30 kg h^(-1)` ethanol along with excess oxygen to the system at `18^(@)C`, given that a `42 mol%` yield based on ethanol is obtained. Given that
`Delta_(f)H^(Theta)underset(H_(2)O)'(l) =- 68.0 kcal mol^(-1)`
`Delta_(f)H^(Theta)underset(C_(2)H_(5)OH)'(l) =- 66 kcal mol^(-1)`
`Delta_(f)H^(Theta)underset(CH_(3)COOH)'(l) =- 118 kcal mol^(-1)`

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From the following data, calculate the standard enthalpy of formation of propane Delta_(f)H^(Theta) CH_(4) = - 17 kcal mol^(-1) Delta_(f)H^(Theta)C_(2)H_(6) =- 24 kcal mol^(-1), BE (C-H) = 99 kcal mol^(-1) (C- C) = 84 kcal mol^(-1) .

From the following data, calculate the standard enthalpy of formation of propane Delta_(f)H^(Theta) CH_(4) = - 17 kcal mol^(-1) Delta_(f)H^(Theta)C_(2)H_(6) =- 24 kcal mol^(-1), BE (C-H) = 99 kcal mol^(-1) (C- C) = 84 kcal mol^(-1) .

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