NCERT Solution for Class Tenth Science Chapter 3
Metals and Non-metals
CBSE NCERT Book Session-2022-2023
Exercises Questions
Page No-20
Questions No-8
In the electrolytic refining of a metal M, what would you take as the anode, the cathode and the electrolyte?
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In the electrolytic refining of a metal M:
Anode → Impure metal M
Cathode → Thin strip of pure metal M
Electrolyte → Solution of salt of the metal M
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While electrolytic refining of a metal M:
Impure metal M will be taken as anode.
Thin strips of pure metal M will be taken as cathode.
Solution of salt of the metal M as electrolyte.
In the electrolytic refining of a metal, such as metal M, the anode, cathode, and electrolyte are chosen based on the specific metal being refined. The anode is typically the impure metal to be refined, the cathode is a pure metal electrode, and the electrolyte is a solution or molten salt of a compound containing the same metal. Here’s a general breakdown of the components for the electrolytic refining of metal M:
1. Anode: The impure metal M is taken as the anode. This means the metal to be refined is connected to the positive terminal of the power supply. During the electrolytic process, the metal at the anode dissolves into the electrolyte, releasing metal ions.
2. Cathode: A pure metal electrode, often made of the same metal M but pure, is used as the cathode. This pure metal electrode is connected to the negative terminal of the power supply. As metal ions from the anode migrate through the electrolyte toward the cathode, they are reduced and deposited as pure metal on the cathode.
3. Electrolyte: The electrolyte is a solution or molten salt that contains ions of the same metal M. This electrolyte is necessary to allow the transfer of metal ions from the anode to the cathode during the electrorefining process. The choice of the specific electrolyte depends on the metal being refined. The composition of the electrolyte is designed to facilitate the purification process.
The process of electrolytic refining is used to obtain high-purity metals and remove impurities, as the impurities remain in the anode while the pure metal is deposited on the cathode. This is a common method for refining metals like copper, aluminum, and others.