Earth's Resources
This KS3 chemistry lesson explores Earth’s Natural Resources, Materials and Recycling. Students explore finite and renewable resources, the extraction and use of raw materials, and how reuse and recycling can reduce environmental impact. It provides a clear introduction to the topic and can be used for classroom teaching, homework or revision.
Earth's Resources
This KS3 chemistry lesson explores Earth’s Natural Resources, Materials and Recycling. Students explore finite and renewable resources, the extraction and use of raw materials, and how reuse and recycling can reduce environmental impact. It provides a clear introduction to the topic and can be used for classroom teaching, homework or revision.
Earth's Resources, KS3 Science, Chemistry, Earth and Atmosphere, Finite Resources, Renewable Resources, Sustainability, Recycling, Life-Cycle Assessment, Metal Extraction, Raw Materials, MCQs, Open Questions, Polls, Emoji Polls, Exit Tickets
What are some resources you can think of that the Earth has naturally?
Use this to surface prior knowledge such as metals, oil, water, mining, energy, pollution and building materials. Invite students to notice which ideas are about types, uses or problems.
What are Earth resources?
Earth resources are natural materials taken from the Earth's crust, oceans or atmosphere
They include metal ores, fossil fuels, water and mineral resources
People use them for energy, building, manufacturing and daily life
Their usefulness depends on how much is available and how easy it is to extract
Keep the chemistry focus on substances and materials rather than on social or economic policy.
Main types of resource
Metal ores: rocks containing useful metals such as copper
Fossil fuels: crude oil and natural gas used as fuels and feedstocks
Water: essential for life, farming and industry
Mineral resources: substances such as limestone used in construction and manufacture
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Why resources are not evenly spread
Earth resources are found where geological processes formed or concentrated them. Some areas have rich metal ores, some have oil and gas traps, and others have large deposits of useful rocks such as limestone. This uneven distribution affects where extraction takes place.
Link concentration to the idea that a material is only worth extracting if the useful substance is present in high enough amounts.
Formation and concentration
Metal ores form when geological processes concentrate metal compounds in rocks
Crude oil and natural gas form from the remains of ancient organisms over millions of years
Limestone forms from sedimentary processes and becomes concentrated in rock layers
A resource is more useful when it is concentrated enough to extract economically
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How resources are extracted
Mining removes ores from underground or open pits
Drilling brings up crude oil and natural gas from deep rock layers
Quarrying removes large amounts of rock such as limestone from the surface
Stress that different resources need different extraction methods because they occur in different forms and locations.
Why are Earth resources not evenly spread?
They form in different places
They move with weather
They are made by humans
They all dissolve in water
Checks understanding from slides 2–5 that geological processes form or concentrate resources in particular locations.
Mining metal ores
Metal ores are rocks containing enough metal compound to make extraction worthwhile
Copper ores are mined from deposits in the crust
The ore is removed, crushed and processed to obtain the metal
Lower-grade ores need more energy and more rock to be processed
A common misconception is that ores are pure metal. Remind students that the metal is usually chemically combined in the rock.
Drilling for oil and gas
Wells are drilled into rock layers containing crude oil or natural gas
These fuels are pumped to the surface for processing and transport
They are valuable because they provide energy and useful chemical feedstocks
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Quarrying limestone
Limestone is extracted by quarrying
It is used to make cement, for building stone, and in some industrial processes
Because it is a bulk material, large volumes are usually removed near the surface
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Renewable or non-renewable?
Renewable resources are replaced naturally fast enough to be used again
Non-renewable resources form so slowly that they are not replaced on a human timescale
Many metal ores and fossil fuels are non-renewable
Water can be renewable when natural cycles replace it
Students may think renewable means unlimited. Clarify that a renewable resource can still be overused locally.
Availability matters
The availability of a resource depends on more than whether it exists. Scientists and industries must consider how concentrated it is, how easy it is to extract, how much energy is needed, and whether extraction causes major environmental damage.
This is the chemistry idea of balance: useful yield versus energy cost and environmental cost.
Which method is used to extract limestone?
Drilling
Smelting
Quarrying
Mining
Smelting is a plausible misconception because students may confuse extraction with processing.
What decides if a resource is worth extracting?
Students should explain that availability depends on concentration, ease of extraction, energy needed and environmental damage, not just whether the resource exists.
Uses of metal ores
Metals from ores are used in wires, pipes, buildings, vehicles and electronics
Copper is important because it conducts electricity well
Extracted metals are key raw materials for modern industry
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Uses of crude oil and gas
Burned as fuels for heating, transport and electricity generation
Used as feedstocks to make many chemicals and materials
Natural gas is also used in industry and homes
If useful, mention that 'feedstock' means a starting material used to make other substances.
Uses of limestone and water
Limestone is used in building materials and cement manufacture
Water is needed for drinking, washing, farming and many industrial processes
Both are essential resources in everyday life, even though they are used in different ways
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Environmental impacts of extraction
Mining, drilling and quarrying can destroy habitats
Large extraction sites change landscapes and remove vegetation
Transport and processing can add further environmental pressure
Keep the focus on the physical effects of extracting materials from the Earth.
Pollution from resource use
Extraction can pollute air, water and soil
Burning fossil fuels releases pollutants and carbon dioxide
Processing ores and rocks can produce waste and dust
Pollution can affect both ecosystems and human health
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Resource depletion
Non-renewable resources are finite. As richer deposits are used up, extraction may move to lower-grade ores or harder to reach fuels. This usually means more energy, more cost and often greater environmental impact for each useful amount obtained.
This links availability, exploitation and environmental issues into one idea.
Examples: copper, oil and limestone
Copper ores: useful for electrical wiring, but mining and processing can damage land and create waste
Crude oil and natural gas: valuable fuels and feedstocks, but drilling and burning cause pollution
Limestone: important for cement and construction, but quarrying can scar landscapes and destroy habitats
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Why is copper widely used in electrical wiring?
It is easy to quarry
It conducts electricity well
It is a renewable metal
It forms near the surface
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Which environmental issue seems most serious to you?
Habitat loss
Air pollution
Water pollution
Resource depletion
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How good do you feel your understand is of the resources on Earth?
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Glossary 1
Earth resource - a natural material obtained from the Earth and used by people
metal ore - a rock containing enough metal compound to make extraction worthwhile
fossil fuel - a fuel formed from ancient biological material, such as crude oil or natural gas
mineral resource - a useful naturally occurring substance from the Earth, such as limestone
mining - extracting ores or other materials from the ground
drilling - making deep wells to remove resources such as oil or natural gas
quarrying - extracting surface rock, such as limestone, from large open sites
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Glossary 2
renewable resource - a resource replaced naturally fast enough to be used again
non-renewable resource - a resource that is not replaced on a human timescale
resource depletion - the reduction of a resource as it is used up
feedstock - a starting material used to make useful products
habitat destruction - damage to the natural home of plants and animals
pollution - harmful substances released into the environment
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