IB Biology HL Ecosystem Stability & Change Paper 1 & 2 ~13 min read

Sustainable Ecosystems & Agriculture

Sustainability sounds like a vague word until you turn it into a comparison between two rates. Once you see it that way – what is taken out against what grows back – the whole topic becomes a series of arithmetic problems dressed up as case studies.

📚 What you need to know

What sustainable harvesting means

Human activities rely on harvesting resources such as food and timber from the natural environment. Whether that is sustainable comes down to one comparison.

Definition A sustainably harvested resource is one which is replaced as rapidly as it is harvested, meaning that it does not run out.

For that to hold, the use of the resource has to be carefully regulated and monitored to make sure it is not over-harvested. Regulation sets the limit; monitoring checks whether the limit is actually working.

Sustainability is a comparison of two rates Not how much you take. How much you take compared with how much grows back.SUSTAINABLE replaced as fast as it is taken replaced STOCK stays the same harvested never runs outUNSUSTAINABLE taken faster than it can be replaced replaced STOCK falls year on year harvested eventually runs outThis is why a slow-growing hardwood needs far more careful management than a fast-growing fish.
The two rows differ only in the thickness of the arrows. Everything else about the harvest could be identical.

Case study 1: black cherry timber

Black cherry is a hardwood tree found in North America, popular for furniture production. Hardwood species grow slowly, which is exactly why sustainable methods matter so much here – a fast method like clear felling would leave no timber for many years to come.

Sustainable harvesting of black cherry involves three things:

Look at what those three do: they protect the replacement rate, not the harvest. The second point in particular is the one students forget – if every mature tree is taken, there is nothing left to make seeds, and the replacement rate drops to zero regardless of how carefully the felling was done.

Case study 2: Alaska pollock

Pollock are a fish found across the North Pacific, and the Alaska pollock fishery is the largest sustainably certified fishery in the world. The certification is awarded by the Marine Stewardship Council (MSC).

Six features make it sustainable, and they divide neatly into biology, method and enforcement.

CategoryFeature
BiologyPollock are a fast-growing species which can reproduce from the age of 3-4 years, so stocks replace themselves quickly
MethodNets have minimal contact with the sea bed, so that habitat is not damaged
MethodBycatch – the proportion of fish caught that are not pollock – is very low, at less than 1 %
RegulationAny bycatch caught cannot be sold commercially, so avoiding it is in the fishermen’s own interest
MonitoringClose monitoring by science research vessels and by trained individuals on board commercial fishing vessels
RegulationAreas with a higher than normal number of salmon bycatch are closed off to fishing vessels
The clever bit. Making bycatch unsellable is a regulation that works with human behaviour instead of against it. Fishermen have no reason to catch anything they cannot sell, so the rule enforces itself. Worth mentioning if a question asks you to evaluate the effectiveness of a management measure.

Factors affecting sustainability in agriculture

Agriculture has to produce enough food and materials for the human population, and doing that sustainably is a genuinely complex problem with several factors pulling against each other.

Five pressures on sustainable farming Three are about what leaves the field. Two are about what goes into it. SOIL EROSION clearing land removes the roots that hold the topsoil in place fix: cover crops LEACHING AND RUN-OFF soluble fertiliser is washed out of the soil into nearby water fix: small doses, dry weather FERTILISER SUPPLY expensive, energy intensive and tied to global energy prices fix: organic fertilisers POLLUTION agrochemicals enter the wider environment and kill non-targets fix: biological pest control CARBON FOOTPRINT fossil fuels for transport, machinery and fertiliser manufacture fix: renewable energyEvery fix has a cost attached, which is why none of them has simply been adopted everywhere.
The green line in each box is the mitigation. Exam questions often give you the problem and ask for that line.

Soil erosion

To grow crops or keep large numbers of grazing animals, land needs to be cleared. Removing larger trees and shrubs means the roots that hold the soil together are lost, leaving less stable soil that can easily be washed or blown away. The particular risk is to topsoil, the nutrient-rich upper layer.

The result is soil erosion, and less soil available for crop or grass growth. Crops and grass do give some soil stability themselves, but they may only provide partial cover, or be removed after harvest, or be lost to overgrazing or poor weather. Farmers sometimes plant cover crops to hold the topsoil together between growing seasons.

Leaching and nutrient run-off

Synthetic fertilisers can lead to nutrient run-off through leaching: rainfall washes the fertiliser out of the soil and into nearby bodies of water. The reason it happens so readily is that the minerals in synthetic fertilisers are highly soluble, so they dissolve in rainwater before being washed away.

Leaching can be reduced by applying fertilisers in small volumes, at times when rain is not forecast, and by using organic rather than synthetic fertilisers. Keep this section in mind – the next page is entirely about what happens to the water once the fertiliser gets there.

Fertiliser supply

Chemical fertilisers matter to many farmers but are not always easy to supply. They are expensive, and because so many farmers use them, supply may not meet demand. Fertiliser production is also very energy intensive, so the cost is tied to global energy prices. Switching to organic fertilisers can reduce some of these difficulties.

Pollution

Some types of farming rely on chemicals known as agrochemicals. Alongside chemical fertilisers, these include pesticides, herbicides and fungicides. They are used to improve yield, which would otherwise be damaged by insect pests, competition from weeds, or fungal disease.

The problem is that these chemicals can enter the natural environment and cause problems there, for example by killing non-target species. Two approaches reduce the need for them:

Carbon footprint

Agriculture relies on fossil fuels for transportation, machinery, and the production of synthetic fertilisers. Combustion of those fuels releases carbon dioxide, increasing the carbon footprint of agriculture and contributing to climate change. Moving to renewable energy sources and energy-efficient practices can reduce it.

Worked examples

WE 1

Define and apply

Define a sustainably harvested resource, and explain why selective felling makes black cherry harvesting more sustainable than clear felling. (3 marks)

Step 1: the definition A sustainably harvested resource is one that is replaced as rapidly as it is harvested, so it does not run out. Step 2: why clear felling fails Hardwoods grow slowly, so clear felling removes all the trees at once and leaves no timber for many years. Step 3: why selective felling works Selective felling takes specific individual trees, leaving enough behind to flower and produce seeds so new saplings germinate. Take some, leave enough to reproduce, and check the numbers mentioning the canopy gaps encouraging forest floor growth is worth adding if there is room
WE 2

Evaluate a fishery

Explain three reasons why the Alaska pollock fishery is considered sustainable. (3 marks)

Any three of the following Pollock are fast growing and can reproduce from 3-4 years old, so stocks replace themselves quickly; nets have minimal contact with the sea bed so the habitat is not damaged; bycatch is less than 1 %; bycatch cannot be sold commercially, so fishermen avoid catching it; close monitoring is carried out on research and commercial vessels; areas with high salmon bycatch are closed to fishing. Fast replacement, low damage, tight monitoring choose reasons from different categories – three points about nets will read as one idea
WE 3

Explain and solve

Explain how clearing land for agriculture leads to soil erosion, and suggest one way farmers reduce it. (3 marks)

Point 1: what is removed Clearing removes larger trees and shrubs, so the roots that hold the soil together are lost. Point 2: the consequence The soil becomes less stable and can be washed or blown away, particularly the nutrient-rich topsoil, reducing the soil available for growth. Point 3: the solution Planting cover crops between growing seasons holds the topsoil together. No roots, no soil stability, so put roots back between crops name topsoil specifically – it is the layer that matters and it is usually a marking point

💡 Exam tips

⚠ Common mistakes

Up next: Eutrophication – what happens downstream when the fertiliser that leached out of a field arrives in a lake.

Want this explained one-to-one?

Book a free session with an experienced IB Biology tutor and get your trickiest topics made simple.

Book a Free Session →