Cycles in Nature
5. Human Impacts on Biogeochemical Cycles
Learning outcomes
- I can identify ways humans alter natural cycles.
- I can explain the effects of pollution on nutrient cycles.
- I can describe the impacts of deforestation on cycles.
- I can analyse how agriculture affects nutrient movement.
- I can evaluate strategies for reducing human impacts.
Introduction
The Earth's ecosystems depend on the continuous movement of essential substances such as water, carbon, nitrogen, and phosphorus. These movements, known as biogeochemical cycles, recycle nutrients between the atmosphere, oceans, soil, rocks, and living organisms. For millions of years, these cycles remained in a natural balance that supported diverse ecosystems.
Today, human activities are changing these natural cycles at an unprecedented rate. Burning fossil fuels, clearing forests, farming, mining, and pollution all affect how nutrients move through the environment. Understanding these impacts helps scientists develop solutions that protect ecosystems and ensure that natural cycles continue to support life on Earth.
What Are Biogeochemical Cycles?
A biogeochemical cycle is the movement of chemical elements through:
- Living organisms (bio)
- Earth's land, water, and atmosphere (geo)
- Natural chemical processes (chemical)
Examples include:
- The Water Cycle
- The Carbon Cycle
- The Nitrogen Cycle
- The Phosphorus Cycle
These cycles continually recycle the materials needed for life.
Figure 1. Earth's major biogeochemical cycles continuously recycle the substances needed for life.
How Humans Alter Natural Cycles
Many human activities change the speed and balance of natural cycles.
Examples include:
- Burning fossil fuels
- Deforestation
- Agriculture
- Mining
- Urban development
- Industrial pollution
These activities often move nutrients much faster than natural ecosystems can absorb or recycle them.
Pollution and Nutrient Cycles
Pollution can interfere with several natural cycles.
Air Pollution
Burning coal, oil, and natural gas releases:
- Carbon dioxide (CO₂)
- Nitrogen oxides (NOₓ)
- Sulfur dioxide (SO₂)
These gases contribute to:
- Climate change
- Acid rain
- Smog
Water Pollution
Fertilisers and sewage introduce large amounts of nitrogen and phosphorus into rivers and lakes.
Excess nutrients cause:
- Rapid algal growth
- Reduced oxygen levels
- Fish deaths
- Loss of biodiversity
This process is called eutrophication.
Soil Pollution
Industrial waste, pesticides, and heavy metals can reduce soil quality and harm decomposers that recycle nutrients.
Figure 2. Pollution can disrupt the movement of nutrients through air, water, and soil.
Deforestation and Biogeochemical Cycles
Forests play a major role in several cycles.
Trees:
- Absorb carbon dioxide.
- Release oxygen.
- Store carbon in wood.
- Return water to the atmosphere through transpiration.
- Help maintain healthy soils.
When forests are cleared:
- Less carbon dioxide is removed from the atmosphere.
- Stored carbon is released through burning or decay.
- Transpiration decreases.
- Soil erosion increases.
- Local rainfall patterns may change.
- Habitats are destroyed.
Deforestation therefore affects both the carbon cycle and the water cycle.
Figure 3. Deforestation disrupts multiple biogeochemical cycles by removing trees that store carbon and recycle water.
Agriculture and Nutrient Movement
Modern agriculture helps feed billions of people, but it can also alter nutrient cycles.
Fertilisers
Farmers add nitrogen and phosphorus fertilisers to improve crop growth.
Problems occur when excess fertiliser is washed into rivers and lakes.
This may cause:
- Algal blooms
- Oxygen depletion
- Fish kills
- Poor water quality
Livestock Farming
Large numbers of farm animals produce waste containing nitrogen and phosphorus.
If not managed properly, these nutrients may enter nearby waterways.
Soil Disturbance
Frequent ploughing and poor soil management can:
- Increase erosion.
- Reduce soil carbon.
- Decrease soil fertility.
Figure 4. Fertiliser runoff can carry excess nutrients into rivers and lakes, leading to eutrophication.
Climate Change and the Carbon Cycle
Burning fossil fuels has greatly increased the amount of carbon dioxide in the atmosphere.
More atmospheric carbon dioxide strengthens the greenhouse effect, leading to:
- Rising global temperatures.
- Melting glaciers.
- Rising sea levels.
- Changing rainfall patterns.
- More frequent extreme weather events.
Climate change can also affect:
- The water cycle.
- Plant growth.
- Soil decomposition.
- Ocean chemistry.
Because Earth's systems are interconnected, changes to one cycle often influence many others.
Reducing Human Impacts
Scientists, governments, and communities are developing ways to reduce damage to natural cycles.
Sustainable Farming
- Apply fertilisers carefully.
- Plant cover crops.
- Rotate crops.
- Reduce soil erosion.
Protecting Forests
- Reduce deforestation.
- Replant trees.
- Protect natural habitats.
Reducing Fossil Fuel Use
- Use renewable energy.
- Improve energy efficiency.
- Drive electric vehicles.
- Use public transportation.
Protecting Water Resources
- Treat wastewater.
- Reduce pollution.
- Create buffer zones beside rivers.
- Restore wetlands.
Recycling and Waste Reduction
Reducing waste lowers pollution and conserves natural resources.
Small individual actions can contribute to healthier ecosystems.
Figure 5. Sustainable practices can help reduce human impacts on Earth's biogeochemical cycles.
How the Cycles Are Connected
The major biogeochemical cycles do not operate independently.
For example:
- Deforestation affects both the carbon and water cycles.
- Fertiliser use affects the nitrogen and phosphorus cycles.
- Climate change influences the water, carbon, and nitrogen cycles.
- Healthy soils support both the carbon and nitrogen cycles.
Understanding these connections helps scientists predict environmental changes and develop effective conservation strategies.
Worked Example
Question
Match each human activity with the biogeochemical cycle it most directly affects.
| Human Activity | Primary Cycle(s) Affected |
|---|---|
| Burning fossil fuels | Carbon Cycle |
| Deforestation | Carbon Cycle, Water Cycle |
| Excess fertiliser use | Nitrogen Cycle, Phosphorus Cycle |
| Urban development | Water Cycle |
| Wastewater pollution. | Nitrogen Cycle, Phosphorus Cycle |
Many activities affect more than one cycle because Earth's systems are interconnected.
Real-World Connection
Many cities are now investing in green infrastructure to reduce their environmental impact. Green roofs, rain gardens, wetlands, urban forests, and permeable pavements help absorb rainwater, reduce flooding, improve water quality, store carbon, and create habitats for wildlife. These projects demonstrate how thoughtful planning can help restore natural biogeochemical cycles even in urban environments.
Did You Know?
Peatlands—wetlands that accumulate partially decomposed plant material—cover only about 3% of Earth's land surface, yet they store more carbon than all the world's forests combined. Protecting peatlands helps preserve one of the planet's largest natural carbon reservoirs and reduces greenhouse gas emissions.
Key Terms
Biogeochemical cycle – The movement of chemical elements through living organisms, the atmosphere, water, soil, and rocks.
Carbon cycle – The movement of carbon through Earth's systems.
Deforestation – The large-scale removal of forests.
Eutrophication – The enrichment of water with nutrients, causing excessive algal growth and oxygen depletion.
Greenhouse effect – The warming of Earth's surface caused by greenhouse gases trapping heat in the atmosphere.
Nutrient runoff – The movement of nutrients from land into waterways.
Renewable energy – Energy from naturally replenished sources such as sunlight, wind, and flowing water.
Sustainable agriculture – Farming practices that protect the environment while maintaining food production.
Water cycle – The continuous movement of water through Earth's atmosphere, land, and living organisms.
Key Takeaways
- Human activities can significantly alter Earth's natural biogeochemical cycles.
- Pollution affects the movement of nutrients through the atmosphere, soil, and water.
- Deforestation disrupts the carbon and water cycles by reducing carbon storage and transpiration.
- Agriculture can improve food production but may also increase nutrient runoff and eutrophication if not managed carefully.
- Sustainable farming, forest conservation, pollution reduction, renewable energy, and responsible land management can help reduce human impacts and maintain healthy ecosystems.