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Experimental Chemistry

Topic 4 of 6

Distillation and liquid layers

Use boiling-point differences or immiscibility.

O-Level 6092 (2026) / SEC G3 K324 (2027)

Distillation and liquid layers

Use boiling-point differences or immiscibility.

Simple distillation recovers a solvent from a solution containing a non-volatile solute. Heat salt water: water vaporises, enters a condenser, cools and becomes liquid distillate. Salt remains in the flask. Place the thermometer bulb near the side-arm to measure the vapour entering the condenser. Cooling water enters the condenser at the lower end and exits at the upper end to keep the jacket full.

Fractional distillation separates miscible liquids with different boiling points, especially when those boiling points are close. A fractionating column provides repeated evaporation and condensation. The vapour reaching its top is richer in the more volatile, lower-boiling component. Collect fractions over suitable temperature ranges. Crude oil is separated into groups of hydrocarbons this way; a fraction is generally a mixture, not one pure compound.

Pure only

For immiscible liquids such as oil and water, use a separating funnel. Let two layers settle, remove the stopper and open the tap to drain the denser lower layer. Close the tap at the boundary. Density tells you which layer is lower; do not assume the substance you want is always on top.

Check your understandingYou need pure water from seawater. Why choose distillation rather than evaporation to dryness?Think it through, then reveal the answer
Distillation condenses and collects the water vapour. Evaporation to dryness leaves salt behind but loses the water into the surroundings.