IB ESS SL Topic 4 — Aquatic Food Production Systems Paper 1 & 2 Core idea ~11 min read

Aquaculture and Fish Farming

Wild capture stopped growing decades ago, yet the world keeps eating more seafood every year. The difference has come almost entirely from farming. Aquaculture takes the pressure off wild stocks — and creates a fresh set of environmental problems in the process. Both halves of that sentence earn marks.

📚 What you need to know

What aquaculture is

Also called fish farming or aquafarming, aquaculture means growing aquatic organisms under controlled conditions rather than catching them wild. It is done for commercial, recreational and conservation purposes.

Not all farming is equal. Farming mussels or seaweed adds food without needing feed at all — they filter or photosynthesise. Farming salmon needs feed made partly from wild fish. Naming that difference is one of the sharpest evaluation points available on this topic.

Why it has grown, and why it will keep growing

The benefits

Additional food resources. Aquaculture contributes to global food security by supplying nutritious food that does not come out of wild stocks. Farmed fish and shellfish give a consistent supply of protein-rich seafood, which helps address nutritional deficiencies. Controlled conditions also make production efficient and reduce waste.

Economic development. It is now a significant global sector, generating employment, income and growth. It provides livelihoods for millions, especially in coastal and rural communities where fishing and farming are central to the local economy, and it encourages trade and investment.

Pressure off wild stocks. Every tonne farmed is, in principle, a tonne not taken from the sea, giving wild populations room to recover and ecological balance a chance to be restored.

The system, and what leaks out of it

A fish pen is an open system sitting inside a larger one. Whatever goes in that the fish do not use, and whatever the fish produce, ends up in the surrounding water.

A FISH PEN AS A SYSTEM The pen has walls, but the water flows straight through it. feed antibiotics, medicines antifouling chemicals harvest of fish nutrients, waste, chemicals escapees and disease FISH PEN high stocking density Only one of the three outputs is the product. Uneaten feed, faeces, medicines and escaped fish all enter the surrounding water.
Draw this system when you are asked to explain aquaculture’s impacts. Every issue in the table below is one of the red arrows.

The issues

IssueWhat happens
Habitat lossFacilities often require natural habitats — wetlands, mangroves, coastal areas — to be cleared or modified into fish farms, which damages biodiversity, ecosystem function and the livelihoods of local communities
Pollution: nutrientsExcess nutrients from uneaten feed and fish waste leach into surrounding water, causing eutrophication, algal blooms and oxygen depletion
Pollution: chemicalsFeed additives such as growth enhancers and colourants can affect water quality, and antifouling agents used to stop mussels and barnacles growing on the infrastructure leach out as biocides harmful to marine life
Pollution: medicinesAntibiotics and other treatments enter surrounding waters, posing risks to aquatic organisms and contributing to antibiotic resistance
Spread of diseaseThe high density of fish lets disease spread rapidly among stock, and without proper biosecurity pathogens can pass to wild fish populations too
Escaped speciesEscapees interact genetically with wild populations through competition, interbreeding and transmission of genetic disease; where genetically modified fish are used, the ecological and ethical concerns are greater still
Ethics and biorightsQuestions about the treatment and welfare of farmed animals in intensive systems — confinement, stress, antibiotics and growth enhancers, and overall quality of life

The feed problem

This is the point that turns a good answer into a strong one. Farming a herbivore or a filter feeder adds food to the world. Farming a carnivore such as salmon does not, entirely — because the feed is made partly from wild-caught fish processed into fishmeal and fish oil.

FARMED FISH STILL EAT WILD FISH The catch does not disappear; it moves into the feed bag. WILD FISH CAUGHT FOR FEED ONE FARMED SALMON processed into fishmeal and fish oil Farming a carnivore still takes fish out of the sea. Farming mussels, tilapia or seaweed does not.
It can take several kilograms of wild fish to produce one kilogram of farmed carnivorous fish. That is why “aquaculture protects wild stocks” is only true for some species — and why the industry is working hard on plant-based and insect-based feeds.
If you can only carry one extra fact into the exam from this page, carry that one. Almost every candidate writes “aquaculture reduces pressure on wild fish”. The ones who add “except where the feed is made from wild fish” are writing at a different level.

Legislation

Aquaculture must comply with international conservation legislation to ensure resources are used sustainably and biodiversity is protected. Compliance helps prevent exploitation of threatened species, maintain ecological balance and keep the industry viable in the long term. Balancing environmental sustainability, animal welfare and legal obligations is what makes an aquaculture sector socially responsible as well as profitable.

Worked examples

EXAM Q1

Explain two environmental problems caused by intensive fish farming. [4]

Problem 1: nutrient pollution Uneaten feed and fish waste release excess nutrients, causing eutrophication, algal blooms and oxygen depletion in surrounding water. Problem 2: escapees and disease Escaped farmed fish compete and interbreed with wild populations, and high stocking density lets pathogens spread to wild stocks. Both come from the pen being open to the sea around it habitat loss from clearing mangroves is an equally strong alternative
EXAM Q2

Evaluate the claim that aquaculture reduces pressure on wild fish stocks. [4]

Support 1: it substitutes for wild catch Farmed supply meets demand that would otherwise be met by fishing wild populations, letting them recover. Support 2: scale Aquaculture now supplies most of the growth in global seafood. Against 1: feed Carnivorous species are fed on wild-caught fish made into fishmeal, so pressure is shifted rather than removed. Against 2: other impacts Escapees, disease and pollution can directly harm the wild populations it is supposed to protect. True for filter feeders and herbivores; only partly true for carnivores a species-dependent conclusion scores better than a flat yes or no
EXAM Q3

Suggest two ways a fish farm could reduce its environmental impact. [2]

Idea 1: control the outputs Use recirculating closed systems that treat and reuse water, so nutrients and medicines do not reach open water. Idea 2: change the inputs Switch to plant-based or insect-based feed, or farm lower-trophic species such as mussels and seaweed. Close the system, or move down the food chain stronger nets and better siting away from mangroves also count

💡 Exam tip

⚠ Common mix-up

Up next: Warming Seas and Ocean Acidification — the pressure acting on every system in this sub-topic at once, whether it is farmed, fished or protected.

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