Iron can be extracted from haematite, Fe2O3, using either C or CO2 as the reducing agent. The reactions are shown below. Fe2O3(s) + 3 C(s) → 2 Fe(s) + 3 CO(g) ΔH = +492.7 kJ /mol Fe2O3(s) + 3 CO(g) → 2 Fe(s) + 3 CO2(g) ΔH = - 24.8 kJ/mol Substance S° (J/ K·mol) Fe2O3 (s) 87.4 Fe (s) 27.3 C (s) 5.7 CO (g) 197.6 CO2 (g) 213.6 Use available data given to: 1. Calculate the minimum temperature at which reduction with carbon is feasible 2. Prove by calculation that reduction with carbon monoxide is feasible at all temperatures

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Iron can be extracted from haematite, Fe2O3, using either C or CO2 as the reducing agent.
The reactions are shown below.
Fe2O3(s) + 3 C(s) → 2 Fe(s) + 3 CO(g) ΔH = +492.7 kJ /mol
Fe2O3(s) + 3 CO(g) → 2 Fe(s) + 3 CO2(g) ΔH = - 24.8 kJ/mol
Substance S° (J/ K·mol)
Fe2O3 (s) 87.4
Fe (s) 27.3
C (s) 5.7
CO (g) 197.6
CO2 (g) 213.6
Use available data given to:
1. Calculate the minimum temperature at which reduction with carbon is feasible
2. Prove by calculation that reduction with carbon monoxide is feasible at all temperatures

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