Q.What is the role of graphite rod in the electrometallurgy of aluminium?
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Start your 14-day free trial to unlock the full solution →Step 1 – Setup of the Hall–Héroult electrolytic cell
In the electrolytic extraction of aluminium, purified alumina is dissolved in molten cryolite (with some fluorspar) inside a steel vessel lined internally with carbon, which serves as the cathode. A number of thick graphite (carbon) rods are dipped into the molten electrolyte from above — these serve as the anode.
Step 2 – Electrode reactions
On passing a strong direct current:
- At the cathode (carbon lining): ions are reduced to molten aluminium metal, which, being denser, collects at the bottom of the cell and is periodically tapped off.
- At the anode (graphite rods): oxide ions are oxidised, releasing oxygen gas.
Step 3 – Why the graphite rods get consumed
The oxygen gas generated at the anode, at the high operating temperature of the cell (~1140–1200 K), reacts with the carbon of the graphite anode itself:
This means the graphite anode is continuously burnt away/oxidised during operation, and so it has to be periodically lowered and eventually replaced as it wears down — this is a routine operating requirement of the process, unlike the carbon cathode lining, which is not consumed in the same way.
Step 4 – Summary of role …
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