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Chemistry · Ch 11 — The p-Block Elements

Carbon Monoxide

11.8.1

Carbon Monoxide

Carbon Monoxide, CO

Preparation.

  • Direct oxidation with limited oxygen/air: 2C(s)+O2(g)→Δ2CO(g)2C(s) + O_2(g) \xrightarrow{\Delta} 2CO(g)
  • Laboratory-scale: dehydrating formic acid (HCOOHHCOOH) with concentrated H2SO4H_2SO_4 at 373 K releases water and CO.
  • Commercially — passing steam over red-hot coke gives water gas (or synthesis gas), a mixture of CO and H2H_2:

C(s)+H2O(g)→473−1273 KCO(g)+H2(g)C(s) + H_2O(g) \xrightarrow[473-1273\,K]{} CO(g) + H_2(g)

  • Passing air (instead of steam) over hot coke gives producer gas, a mixture of CO and N2N_2:

2C(s)+O2(g)+4N2(g)→1273 K2CO(g)+4N2(g)2C(s) + O_2(g) + 4N_2(g) \xrightarrow{1273\,K} 2CO(g) + 4N_2(g)

Both water gas and producer gas are important industrial fuels; the CO in them undergoes further combustion to CO2CO_2, releasing heat.

Properties. CO is a colourless, odourless gas, almost insoluble in water. It is a powerful reducing agent, reducing almost every metal oxide except those of the alkali metals, alkaline earth metals, aluminium, and a few transition metals — a property put to industrial use to extract metals from their ores:

Fe2O3(s)+3CO(g)→Δ2Fe(s)+3CO2(g)ZnO(s)+CO(g)→ΔZn(s)+CO2(g)Fe_2O_3(s) + 3CO(g) \xrightarrow{\Delta} 2Fe(s) + 3CO_2(g) \qquad ZnO(s) + CO(g) \xrightarrow{\Delta} Zn(s) + CO_2(g)

Bonding. The C–O bond in CO is a triple bond — one σ\sigma and two π\pi bonds — with a lone pair remaining on carbon: :C≡O::C \equiv O:. Because of this lone pair, CO acts as an electron-pair donor and reacts with many metals on heating to form metal carbonyls. …