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Q.Write the name and principle of the method used for refining of

(a) Zinc,
(b) Germanium,
(c) Titanium.
CBSECBSE Class XII Board 2019Subjective· 3mImportance★★★★★est
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The refining of metals uses different principles based on their chemical properties: Zinc is refined by distillation (low boiling point), Germanium by zone refining (impurity segregation), and Titanium by Kroll process (reduction followed by distillation).

The key idea is that no single refining method works for all metals. The choice depends on the metal's volatility, melting point, and reactivity. For example, a metal that boils at a relatively low temperature can be separated from less volatile impurities by simple distillation. A metal that forms a volatile compound can be purified by decomposing that compound. And a metal whose impurities have different solubility in the solid vs. liquid state can be purified by moving a molten zone along a rod.

Let’s look at each metal separately.


1. Zinc (Zn)

Zinc has a relatively low boiling point (907 °C). Its common impurities (like iron, lead, cadmium) have much higher boiling points. This makes distillation the ideal method.

Principle: The impure metal is heated above its boiling point. Zinc vaporises, leaving behind the less volatile impurities. The zinc vapour is then condensed in a separate chamber to collect pure zinc.

Tip

This is a classic example of distillation — a physical separation based on differences in boiling points. It works because zinc is unusually volatile for a metal.

Method name: Distillation (or fractional distillation, if cadmium is also present and separated by careful temperature control).


2. Germanium (Ge)

Germanium is used in semiconductors, where even trace impurities (like boron or phosphorus) ruin its electrical properties. Distillation won't work because germanium has a very high melting point (938 °C) and its impurities are chemically similar. The method used is zone refining.

Principle: A narrow molten zone is moved slowly along a rod of impure germanium. Impurities are more soluble in the liquid phase than in the solid phase. As the zone moves, impurities are "swept" along with it, concentrating at one end of the rod. The pure end is then cut off.

Watch out

A common mistake is to think zone refining is about boiling. It is not. It relies on the difference in solubility of impurities in the solid vs. liquid state — a principle called segregation.

Method name: Zone refining (also called zone melting).


3. Titanium (Ti) …

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