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Intermediate

Reactions of Acids and Making Salts

4.4.2.1 Reactions of acids with metals·4.4.2.2 Neutralisation of acids and salt production·4.4.2.3 Soluble salts

Aligned to the AQA 8462 specification

Level
Intermediate
Reading time
7 min
Published
2 July 2026
On this page
  1. 1.Acids React with Metals to Give a Salt and Hydrogen
  2. 2.Acid with a Metal Reacting Is Redox (HT)
  3. 3.Neutralisation and the Salt Produced
  4. 4.Deducing the Formula of a Salt
  5. 5.Required Practical: Making a Pure, Dry Soluble Salt
  6. 6.Common Exam Mistakes

Key takeaways

  • Acids react with some metals to give a salt plus hydrogen; AQA limits this to magnesium, zinc and iron with hydrochloric and sulfuric acid.
  • Acids are neutralised by alkalis and bases to give a salt plus water, and by metal carbonates to give a salt, water and carbon dioxide.
  • The salt made depends on the acid: hydrochloric acid gives chlorides, sulfuric acid gives sulfates and nitric acid gives nitrates, with the positive ion coming from the base or metal.
  • A soluble salt is made by adding excess insoluble solid (a metal oxide, hydroxide or carbonate) to warm acid, filtering off the excess, then crystallising the salt solution.
  • (Higher Tier) An acid reacting with a metal is a redox reaction: the metal atoms lose electrons and are oxidised, while hydrogen ions gain electrons and are reduced.

Acids React with Metals to Give a Salt and Hydrogen

Acids react with some metals to produce a salt and hydrogen gas. For AQA GCSE Chemistry, you only need the reactions of magnesium, zinc and iron with hydrochloric acid and sulfuric acid. Copper is below hydrogen in the reactivity series and does not react.

Hydrochloric acid makes chloride salts and sulfuric acid makes sulfate salts. Two worked equations:

The hydrogen produced can be tested with a lit splint: it burns with a squeaky pop. The more reactive the metal, the faster the fizzing, so magnesium reacts faster than zinc, which reacts faster than iron.

Acid + metal → salt + hydrogen. Keep this limited to Mg, Zn and Fe with hydrochloric and sulfuric acid, exactly as the specification requires.

Acid with a Metal Reacting Is Redox (HT)

(Higher Tier only) Explaining the reaction of acids with metals as a redox reaction in terms of electrons is assessed at Higher Tier.

When a metal reacts with an acid, electrons are transferred, so the reaction is a redox reaction. The metal atoms lose electrons (are oxidised) and the hydrogen ions from the acid gain electrons (are reduced).

Take magnesium reacting with hydrochloric acid. The ionic equation, with chloride as a spectator ion removed, is:

Splitting this into half equations shows the electron transfer:

So the metal is oxidised and the hydrogen ions are reduced. This is the same electron-transfer idea (OIL RIG) used for displacement reactions.

Neutralisation and the Salt Produced

An acid is neutralised by a base. Bases include alkalis (soluble metal hydroxides), insoluble metal hydroxides and metal oxides, and metal carbonates. The general patterns are:

Reactant with acidProducts
Alkali (soluble metal hydroxide)salt + water
Metal oxide or insoluble hydroxide (base)salt + water
Metal carbonatesalt + water + carbon dioxide

The salt produced depends on two things:

  • The acid sets the second part of the name: hydrochloric → chloride, sulfuric → sulfate, nitric → nitrate.
  • The positive ion of the base, alkali or carbonate sets the first part of the name.

Worked examples:

Only the carbonate reaction releases carbon dioxide. Oxides and hydroxides give salt and water with no gas.

Deducing the Formula of a Salt

To write a salt's formula, balance the charges of its ions so the overall charge is zero. You need the common ion charges: the metal ion (from its group or given), and the acid ion (chloride , nitrate , sulfate ).

Worked example — magnesium chloride. Magnesium forms ; chloride is . To balance a charge you need two ions, giving .

Worked example — aluminium sulfate. Aluminium forms ; sulfate is . The lowest common multiple of and is , so you need two (total ) and three (total ), giving .

IonFormulaCharge
Chloride
Nitrate
Sulfate
Magnesium
Aluminium

The total positive charge must equal the total negative charge. Add subscripts to balance the charges, then wrap a polyatomic ion in brackets before adding a subscript, as in .

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Required Practical: Making a Pure, Dry Soluble Salt

Required Practical 1 is to prepare a pure, dry sample of a soluble salt from an insoluble base — a metal oxide or carbonate. The method makes copper sulfate from copper(II) oxide and sulfuric acid, but the same steps work for any insoluble base and acid pair.

Method:

  1. Warm the dilute sulfuric acid gently with a Bunsen burner (this speeds up the reaction). Do not boil the acid dry.
  2. Add the copper oxide a little at a time, stirring, until some solid remains unreacted even after stirring. This shows an excess of the solid has been added.
  3. Filter the mixture. The unreacted excess copper oxide stays on the filter paper; the blue copper sulfate solution passes through.
  4. Pour the filtered solution into an evaporating basin and heat gently, using a water bath or electric heater, to evaporate about half the water. Stop heating once crystals begin to form and leave the rest to crystallise slowly.
  5. Remove the crystals, pat them dry between filter paper, and you have a pure, dry sample of copper sulfate.

The reaction is:

Understanding why each step is done matters more than the result:

StepWhy it is done
Add solid in excessEnsures all the acid reacts, so no acid contaminates the salt
The base is insolubleAny excess can be filtered off; a soluble base could not be removed
FilterRemoves the unreacted excess solid, leaving pure salt solution
Evaporate gently / water bathRemoves water slowly so large, well-formed crystals grow and the salt is not decomposed by overheating

Excess insoluble base is the key idea: it guarantees the acid is used up, and being insoluble it can be filtered away. This is why the method starts from an oxide or carbonate, not from a soluble alkali.

Common Exam Mistakes

1. Wrong second part of the salt name

The acid decides the ending: hydrochloric acid gives chlorides, sulfuric acid gives sulfates, nitric acid gives nitrates. Do not write "sulfur" for the sulfate from sulfuric acid.

2. Forgetting the carbon dioxide from carbonates

Acid + carbonate gives salt + water and carbon dioxide. Only the carbonate reaction fizzes with a gas; oxides and hydroxides give just salt and water.

3. Not explaining why excess solid is added

The mark is for the reasoning: excess solid ensures all the acid reacts, and because the solid is insoluble the excess can be filtered off. State both parts.

4. Boiling the salt solution dry

Evaporate gently and let the solution crystallise; do not boil it to dryness. Slow crystallisation gives larger, purer crystals, and strong heating can decompose some salts.

5. Saying copper reacts with acid to give hydrogen

Copper is below hydrogen in the reactivity series, so it does not react with dilute acid. To make a copper salt, react copper oxide (a base) with the acid, not copper metal.

6. Confusing acid + metal with acid + base

Acid + metal gives salt + hydrogen; acid + base (oxide or hydroxide) gives salt + water only. Check whether the reactant is the metal or its oxide before choosing the products.

Key terms

Salt
A compound formed when the hydrogen of an acid is replaced by a metal ion or ammonium ion.
Neutralisation
The reaction of an acid with a base, alkali or carbonate that removes the acidity, producing a salt and water.
Base
A substance that neutralises an acid; a soluble base is called an alkali.
Crystallisation
Forming solid crystals from a solution by evaporating some of the water so the dissolved salt can no longer stay in solution.

Frequently asked questions

The salt name has two parts. The first part comes from the metal or base, and the second from the acid: hydrochloric acid gives chlorides, sulfuric acid gives sulfates and nitric acid gives nitrates. For example, copper oxide plus sulfuric acid gives copper sulfate.

Excess solid is added to make sure all the acid reacts, leaving no unreacted acid in the final salt. Because the solid is insoluble, the leftover excess can simply be filtered off, so it does not contaminate the salt.

Carbon dioxide is given off. Acid plus a metal carbonate produces a salt, water and carbon dioxide. You can test the gas with limewater, which turns milky (cloudy white) if the gas is carbon dioxide.

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