IB ESS SL Topic 4 — Water Paper 1 & 2 Core idea ~9 min read

Where Water Pollution Comes From

Water pollution is not one substance. It is a long list of very different things — sewage, fertiliser, hot water, plastic, light, noise, even living species — that all end up in the same rivers, lakes and seas. If you can say where something came from and how it does its damage, you can answer almost any question on this topic.

📚 What you need to know

What actually counts as a pollutant?

Most students picture chemicals. That is only part of it. A pollutant is anything released into a system at a rate the system cannot cope with, and that includes energy — heat from a power station, light from a coastal town, noise from a ship’s engine. It also includes living things: a species carried into a lake where it does not belong is a pollutant in exactly the same sense.

Definition to learn pollution = matter or energy added to a system
faster than the system can make it harmless

That last part matters. A river can break down a small amount of sewage without any lasting harm, because bacteria decompose it and the water re-oxygenates. Double the sewage and the same river turns anoxic. Nothing changed about the substance — only the rate at which it arrived.

If a question asks you to “explain why X is a pollutant”, do not just say it is bad. Say what it does to the organisms or the abiotic conditions, and say why the system cannot absorb it.

Point sources and diffuse sources

This is the single most useful split in the whole topic, and the source PDF barely mentions it. Ask one question of any pollutant: could you stand at the spot where it enters the water?

Two ways a pollutant reaches a river the difference decides how easy it is to control POINT SOURCE one pipe, one place, one owner factory river DIFFUSE SOURCE rain washes it off a whole area farmland, roads, rooftops riverSame river, same nitrate — but only one of these has a tap you can turn off. Point sources are regulated with permits and limits; diffuse sources need land use to change.
Monitoring a point source is a matter of putting a probe in the pipe. Measuring a diffuse source means sampling the river and working backwards.
Why examiners like this split: it explains why nitrate pollution is so stubborn. You can fine one factory. You cannot fine the rain.

The main types of aquatic pollutant

Learn these as a list of source and effect pairs. Almost every data-based question hands you a source and asks for the effect, or hands you an effect and asks you to suggest a source.

PollutantWhere it comes fromWhat it does in the water
Organic matterUntreated sewage, slurry from livestock, food processing waste, dead plant materialFeeds decomposer bacteria, which strip oxygen out of the water as they respire
Inorganic nutrientsNitrate and phosphate from fertiliser run-off, sewage and detergentsTrigger algal blooms and eutrophication, which end in oxygen loss
Industrial effluentWastewater from manufacturing, processing and coolingMixed load of metals, solvents and warm water; often directly toxic to fish and invertebrates
Urban run-offRain washing over roads, car parks and roofsCarries oil, brake dust, road salt, pet waste and litter straight into drains and rivers
Solid wasteLandfill leachate and litter dropped near waterwaysLeaches chemicals into groundwater; traps and injures wildlife
Heavy metalsMining, smelting, old paint, batteries, poor waste disposalMercury, lead, cadmium and arsenic build up in tissue and pass up food chains
Synthetic compoundsPesticides, herbicides, medicines and industrial chemicalsPersist for years, disrupt hormones and reproduction, hard to remove once dispersed
Suspended solidsSoil erosion, construction sites, dredgingCloud the water, clog fish gills and settle over gravel beds where eggs are laid
Hot waterCooling water from power stations and heavy industryWarm water holds less dissolved oxygen and speeds up respiration, so oxygen demand rises
OilSpills, bilge washing, leaks from rigs and pipelinesForms a surface film that blocks gas exchange and ruins the insulation of fur and feathers
Radioactive materialNuclear accidents, mining, badly stored wasteLong-term exposure risk, including mutation and cancer in wildlife and people
PathogensUntreated sewage and animal wasteBacteria, viruses and parasites cause waterborne disease such as cholera and typhoid
LightStreet lighting, harbours, floodlit coastal developmentsBreaks natural day-night cues used for feeding, breeding and navigation
NoiseShipping, sonar, pile driving, offshore constructionMasks the sounds whales and dolphins use to communicate and find food
Invasive speciesBallast water, hull fouling, released aquarium stockOutcompete native species and rewire the food web
Do not try to memorise fifteen rows word for word. Learn one clear example from each group and you will always have something to write.

Direct harm and indirect harm

Group the list a second way, because this is what turns a 2-mark answer into a 4-mark answer:

Every pollution question follows this chain name the link you are being asked about, then name the one either side of it ACTIVITY farms, factories, homes PATHWAY pipe, drain or run-off WATER BODY river, lake or sea IMPACT organisms and peopleManagement can cut in at any link — and the earlier it cuts in, the cheaper it is. You will meet this chain again as the three levels of pollution management.
Hold on to this diagram. The final page of this topic is built on exactly these four links.

🧩 How to attack a “sources of pollution” question

  1. Name the source precisely. Not “farming” but “nitrate fertiliser applied before heavy rain”.
  2. Say point or diffuse. One phrase, and it shows you understand the management problem.
  3. Give the pathway. Surface run-off, groundwater, an outfall pipe, the atmosphere.
  4. Give the effect on the water. Oxygen, light, toxicity or physical smothering — pick the right one.
  5. Finish with an organism. Fish, invertebrates, aquatic plants, people. Marks live in the consequences.

Worked examples

WORKED EXAMPLE

A river runs past a dairy farm and then past a paper mill. Suggest one pollutant from each, and explain how each harms the river. [4]

Farm: pick the pollutant and the route in Slurry and nitrate fertiliser, washed off the fields by rain — a diffuse source. Effect: the organic matter feeds bacteria, whose respiration strips dissolved oxygen; the nitrate feeds algae, which shade the plants below. Mill: pick the pollutant and the route in Warm effluent full of suspended fibre, leaving from one outfall pipe — a point source. Effect: warm water holds less oxygen, and the suspended solids cloud the water and clog fish gills. Two sources, two mechanisms, two effects The mark scheme wants a mechanism, not just the word “pollution”.
WORKED EXAMPLE

Nitrate in a river measures 4 mg/L upstream of a village and 19 mg/L one kilometre downstream. Suggest why, and explain why it is hard to prove. [3]

Read the jump 19 − 4 = 15 mg/L added along a single kilometre of river. Suggest sources A sewage discharge from the village (point), or fertiliser washing off nearby fields (diffuse). Say why proving it is hard A point source can be sampled at the pipe. Diffuse run-off enters all along the bank, changes with rainfall, and lags days behind the day the fertiliser was spread. Rise of 15 mg/L; source likely diffuse

💡 Exam tip

⚠ Common mix-up

Up next: Plastics in Aquatic Systems — where the plastic goes, why it gathers in the middle of oceans, and how it climbs the food chain.

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