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  1. KS3
  2. Chemistry
  3. Mixtures and separation
  4. Evaporation and crystallisation

Mixtures and separation · Process

Evaporation and crystallisation

The salt is dissolved and invisible. Getting it back is easy — getting it back as crystals you can hold is a question of how much of a hurry you are in.

Start here

Same solution, same salt, two dishes. One took four minutes and one took a week.

Both dishes started with 20 cm³ of the same salt solution. One was boiled over a Bunsen until it was dry. The other sat on a windowsill until the water had gone. Both ended up with exactly the same mass of salt.

Which dish has the bigger crystals in it, and why would anyone care?

Evaporation removes the solvent: it leaves the solution as a gas and the solute stays behind. Crystallisation is what the solute does as it goes — once the solution is saturated, solute particles start joining a growing, regular arrangement, and that arrangement is a crystal.

So the two words are not alternatives. Evaporation is the thing you do; crystallisation is the thing the solute does while you do it. How fast you do it decides what you get.

Your turn · the crystallising bench

Pick a solution and a way of removing the water. Predict, then run it.

The solution in the dish

How you remove the water

Before you run it: what will be left in the dish?

Key fact

Evaporating the solvent leaves the solute behind. The slower the solvent goes, the larger and more regular the crystals — and the solvent itself is lost to the air, so this method keeps the solid and throws the liquid away.

Five words

Say your answer out loud before you turn each card over. If you cannot say it, you do not know it yet.

Three jobs · pick the method

Same equipment, three different things wanted

Commit to a method for each, then read what actually happens. One of the three cannot be done this way at all.

A geologist has rock salt dissolved and filtered, and needs the salt back today to weigh it.

A student wants one large, sharp copper sulfate crystal to keep.

A village needs the fresh water out of a barrel of sea water. The salt can be thrown away.

Think again

“The water has gone. It evaporated, so it is not anywhere any more.”

The dish is dry and you can see it is dry. Commit before you read on.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Recall

A salt solution is left in an open dish until the dish is dry. What is left, and what happened to the rest?

Rung 2 · The one that catches people

Two students crystallise identical solutions. One boils hers dry in four minutes; the other leaves his for a week. What is the difference in what they get?

Rung 3 · Explain

Explain, in terms of particles, why slow evaporation produces larger crystals than fast boiling — and why the mass of solid recovered is the same either way.

Rung 4 · Take it somewhere new

A coastal village can boil sea water over a wood fire but has no other equipment. They need drinking water. Explain why evaporating the sea water in an open pan is exactly the wrong thing to do, and what the smallest change to their method would be.

Key note

Evaporation removes the solvent as a gas and leaves the solute behind; crystallisation is the solute coming out of a saturated solution into a regular arrangement. Fast boiling starts thousands of crystals at once and gives a fine crust; slow evaporation starts a few and grows them large. The mass recovered is the same either way — and the solvent is lost, so this method is only for keeping the solid.

Going further

Slow crystallisation has been running for far longer than anyone's windowsill. Salt pans around the Mediterranean flood a shallow bed with sea water, let the sun take the water over weeks, and rake up crystals — the same process, at the scale of a field. Under Naica in Mexico, a cave of gypsum crystals grew in mineral-rich water at a steady 58 °C for hundreds of thousands of years; the largest beams are metres long. Nothing exotic happened. It was simply slow for a very long time.

One warning about heating crystals you have just grown. Copper sulfate crystals are blue because water is built into the crystal itself, and heating them hard drives it out and leaves a white powder. The substance is still there, but the crystals are gone and cannot be undone by cooling. It is a good reason to stop heating a dish while there is still liquid in it and let the last of it go on its own.

Before this lesson

Next in this unit

At GCSE this becomes

  • Crystallisation as a required practical step in making a soluble salt, and hydrated versus anhydrous compounds.

Where to next

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