Every card in Chemical reactions, Year 10: electrolysis and extracting metals
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- A liquid or solution that conducts electricity because it contains ions that are free to move
An electrolyte
HintThe word shares its opening with the name of the process that uses it.
WhyIonic compounds conduct when molten or dissolved in water, because then their ions can move. Passing a current through such a liquid breaks the compound down, which is electrolysis.
- The negative electrode in electrolysis
The cathode
HintIts name begins with the third letter of the alphabet; the name of the positive one begins with the first.
WhyThe negative electrode has this name and the positive electrode is the anode. Positively charged ions are attracted to the negative electrode, and negatively charged ions to the positive one.
- During electrolysis, which ions travel to the positive electrode?
The negatively charged ions
HintUnlike charges attract.
WhyThe positive electrode, the anode, attracts ions with the opposite charge. In molten lead bromide, for example, the bromide ions move to the anode and the lead ions move to the cathode.
- In electrolysis, what happens to an ion when it reaches the electrode it was attracted to?
It is discharged, becoming an atom or molecule of an element
HintIt arrives carrying a charge and does not keep it.
WhyAt the electrode the ion gains or loses electrons, so it loses its charge. Metal ions become metal atoms; non-metal ions become atoms that usually pair up into molecules, such as Br2. This is how electrolysis turns a compound into its elements.
- An equation that shows the electrons gained or lost by one kind of ion at an electrode
A half equation
HintIt tells only part of the story of the whole reaction, and its name says what fraction.
WhyEach electrode has its own, for example Pb²⁺ + 2e⁻ → Pb at the negative electrode, where e⁻ stands for an electron. Higher tier candidates are expected to write these, or to complete and balance ones that are supplied.
- Molten lead bromide is electrolysed using inert electrodes. Which element forms at the negative electrode? (one word)
Lead
HintDecide which of the two ions in the compound carries a positive charge.
WhyLead bromide contains metal ions, Pb²⁺, and bromide ions, Br⁻. The positive metal ions are attracted to the negative electrode, where they are discharged and collect as a molten metal.
- Molten lead bromide is electrolysed. What would you see at the positive electrode?
A brown gas (bromine)
HintThe non-metal is released there, and at this temperature it is not a liquid.
WhyBromide ions are attracted to the positive electrode and are discharged there. The melt is hot enough for the element, a liquid at room temperature, to come off as a coloured vapour. Because that vapour is toxic, the demonstration is done in a fume cupboard.
- Solid lead bromide does not conduct electricity. Why must it be melted before it can be electrolysed?
Melting frees its ions to move
HintThink about what carries the charge through the liquid, and where those particles are stuck in a solid.
WhyIn the solid, the ions are held in fixed positions in a lattice. Once the compound is molten they can travel to the electrodes, so a current can pass and the compound can be broken down.
- The electrodes used for electrolysis are often described as inert. What does inert mean here?
They do not react themselves
HintTheir only job is to carry the current into and out of the liquid.
WhyInert electrodes, usually graphite or platinum, conduct the current but take no part in the chemical changes. That way, whatever forms comes only from the electrolyte.
- Molten sodium chloride is electrolysed. Which element forms at the positive electrode? (one word)
Chlorine
HintThe negative ions in the melt are the ones attracted there.
WhySodium chloride contains Na⁺ and Cl⁻ ions. The negative ions move to the positive electrode and are discharged as a gas, while sodium forms at the negative electrode.
- Iron is extracted by heating its oxide with carbon, but aluminium has to be extracted by electrolysis. What is it about aluminium that makes carbon unable to do the job?
It is more reactive than carbon
HintCompare where the two metals sit in the reactivity series.
WhyCarbon can take oxygen only from the oxides of metals below it in the reactivity series. Aluminium is above carbon, so carbon cannot reduce aluminium oxide and electricity has to be used instead.
- The compound that aluminium oxide is mixed with so that it can be electrolysed at a much lower temperature
Cryolite
HintIts name starts like the word for the science of extreme cold, though it is used molten.
WhyAluminium oxide melts at over 2000 °C, which would take a huge amount of energy. Dissolved in this molten compound it can be electrolysed below 1000 °C, which saves energy and money.
- In the electrolysis cell used to make aluminium, why do the carbon positive electrodes have to be replaced regularly?
They react with the oxygen formed there and burn away
HintThink about which gas is released at that electrode, and what hot carbon does in that gas.
WhyOxide ions are discharged at the positive electrodes. At the working temperature the gas that forms reacts with the carbon to make carbon dioxide, so the electrodes are gradually used up.
- Extracting a metal by electrolysis is expensive because large amounts of energy are needed to ____ the compound and to produce the electric ____.
melt; current
HintOne is a change of state; the other is what flows through the cell.
WhyThe compound must be molten so that its ions can move, and a very large flow of charge must be kept up for a long time to discharge them. Both cost a great deal of energy, which is one reason metals such as aluminium are worth recycling.
- When molten aluminium oxide is electrolysed, which element is released at the positive electrode, before it goes on to react with the carbon there? (one word)
Oxygen
HintThe compound holds only two elements, and the metal goes to the other electrode.
WhyAluminium oxide contains aluminium ions and oxide ions. The negative oxide ions travel to the positive electrode and are discharged as a gas, which then reacts with the hot carbon electrode to give carbon dioxide.
1★ GCSE-CHEM-REA-0035
2★ GCSE-CHEM-REA-0036
3★ GCSE-CHEM-REA-0037
4★ GCSE-CHEM-REA-0038
5★ GCSE-CHEM-REA-0039
6★ GCSE-CHEM-REA-0040
7★ GCSE-CHEM-REA-0041
8★ GCSE-CHEM-REA-0042
9★ GCSE-CHEM-REA-0043
10★ GCSE-CHEM-REA-0044
11★ GCSE-CHEM-REA-0045
12★ GCSE-CHEM-REA-0046
13★ GCSE-CHEM-REA-0047
14★ GCSE-CHEM-REA-0048
15★ GCSE-CHEM-REA-0049
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