IB ESS SL Topic 7 — Solid Waste Paper 1 & 2 Core idea ~13 min read

The Cost of Waste to People and Ecosystems

Nature has always dealt with waste. Leaves fall, animals die, and bacteria break it all down into something useful again. Pollution is what happens when we hand ecosystems more than they can process, or hand them materials they have no way of breaking down at all.

📘 What you need to know

Environmental impacts

Pollution

TypeHow waste causes itConsequence
Air pollutionBurning waste, especially in open landfills, releases harmful gases including carbon dioxide; decomposing organic waste releases methaneBoth gases contribute to climate change, and methane is a potent greenhouse gas
Water pollutionImproper disposal lets chemicals and hazardous materials leach into rivers, lakes and oceansHarms aquatic life and contaminates drinking water sources
Soil pollutionHazardous waste, chemicals and heavy metals from landfills seep into the groundContaminates soil, harms plant growth, and enters food chains through crops
Notice that the methane problem comes from the most harmless-sounding part of the bin. Food and garden waste are natural and biodegradable, but buried under tonnes of rubbish they rot without oxygen, and that is what produces methane rather than carbon dioxide. Sending organic waste to landfill is the mistake, not the waste itself.

Habitat destruction

Landfills and waste dumps take up large areas of land, which usually means destroying natural habitat and losing biodiversity. In Ghana, the Agbogbloshie e-waste dump polluted local water sources and destroyed large areas of natural land — a site that received electronic waste from far wealthier countries.

Social impacts

Waste management is not only an environmental issue. Its social consequences fall particularly on low-income communities and countries.

Health risks

Environmental injustice

High-income countries frequently export waste to low-income countries that struggle to manage it safely. The result is environmental injustice: the negative impacts of waste are experienced disproportionately by poorer countries, which did not generate it.

Key agreement The Basel Convention, introduced by UNEP in 1992
Regulates movement of hazardous waste between countries, prevents export from high-income to low-income nations, and protects health and the environment from improper disposal

The treaty is important, but not a complete solution — illegal waste exporting and dumping still occurs.

Impact on local communities

Living near a landfill or waste processing plant lowers quality of life through bad smells, noise and possible contamination of local water and soil. Communities near waste sites also tend to suffer lower property values, reduced economic opportunities and poorer health outcomes.

The pattern worth naming. Waste sites are rarely placed in wealthy neighbourhoods. Cheaper land means sites end up near communities with the least political power to object, and once a site is there property values fall further, so those with means move away. The injustice is not a coincidence — it is built into how sites get chosen.

Ecosystems and pollution

Definition Pollution occurs when harmful substances are added to the environment at a rate faster than ecosystems can process or transform them into harmless substances

Read that definition carefully: pollution is defined by a rate, not by a substance. Ecosystems naturally absorb and manage a certain amount of waste through processes such as photosynthesis and nutrient cycling. Trouble begins only when the amount exceeds their capacity.

Pollution is a rate problem Nature copes until the rate of input passes what it can process what the ecosystem can process rate of waste added absorbed: no pollution this excess is pollution capacity exceeded Cutting the input, or protecting the ecosystem, both lower the red area
The green line is not fixed. Cut down the forest or drain the wetland and it drops, so pollution appears at a lower rate of input than before.

Ecosystems as natural filters

EcosystemWhat it absorbsHow
ForestsCarbon dioxideTrees absorb it during photosynthesis and release oxygen, reducing atmospheric carbon dioxide
Wetlands such as salt marshes and mangrovesNitrogen, phosphorus and other pollutantsThey trap the substances and use them for plant growth, filtering water before it reaches rivers and oceans
Grasslands and farmlandNitrogen and phosphorusPlants take them up from the soil as nutrients, reducing the impact of agricultural runoff

These are ecosystem services in action. Two matter most here:

Where the limits show

Biodegradability and half-lives

Biodegradability is how quickly natural processes break a substance down into harmless components.

Definition Half-life = the time taken for half of a substance to decay or break down
Long half-life, long problem How much of the original substance is still in the environment all half none 0 15 years 30 years 45 years 60 years DDT: half-life about 15 years food waste: half-life of weeks After 45 years an eighth of the DDT is still there, still doing harm
Each step down the red curve halves what is left, which is why long half-life pollutants never quite disappear — they just get harder to measure.

Worked examples

WE 1

Explain why pollution is defined as a rate

Explain why pollution occurs even though ecosystems can naturally absorb waste. (3 marks)

Point 1: natural capacity Ecosystems absorb and transform a certain amount of waste through processes such as photosynthesis and nutrient cycling. Point 2: the threshold Pollution occurs when substances are added faster than the ecosystem can process them into harmless forms. Point 3: an example Wetlands absorb nitrogen and phosphorus, but heavy agricultural runoff overloads them, causing water pollution and eutrophication. Not the substance, but the rate at which it arrives the word “rate” is the mark — a definition without it is incomplete
WE 2

Discuss the social impacts of waste exports

Discuss the social consequences of high-income countries exporting waste to low-income countries. (4 marks)

Point 1: health Exposure to e-waste and biohazardous materials causes respiratory diseases, skin infections and cancers among those handling it. Point 2: capacity Receiving countries often lack proper facilities to treat waste safely, so it is burned or dumped, creating dangerous living and working conditions. Point 3: injustice This is environmental injustice — the harm falls on countries that did not generate the waste and gain least from the products. Point 4: the counter-argument Exporting can bring income and employment, and the Basel Convention of 1992 regulates hazardous transfers, though illegal dumping still happens. Economic benefit for a few, health and environmental cost for many naming the Basel Convention and its year is an easy way to show precise knowledge
WE 3

Explain the significance of half-life

Explain why pollutants with long half-lives are of particular environmental concern. (3 marks)

Point 1: what half-life means Half-life is the time taken for half of a substance to decay or break down. Point 2: persistence A long half-life means the pollutant stays in the environment for years or decades — DDT’s is around 15 years, so a quarter remains after 30. Point 3: the consequence It remains in soil and water long enough to move through food chains, affecting wildlife and whole ecosystems far from where it was released. Short half-life, short problem; long half-life, a problem for generations contrast with organic waste, which decomposes quickly, to show you understand the comparison

💡 Exam tips

⚠ Common mix-ups

Up next: How Waste Is Disposed Of. Every society has to put its waste somewhere, and there are six main options. None of them is free of drawbacks, and the next page compares them honestly.

Want this explained one-to-one?

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

Book a Free Session →