IB ESS HL Topic 8 — Human Populations Paper 1 & 2 HL only ~11 min read

Population Growth and Environmental Pressure

There are about 8.2 billion of us, and the number is still climbing. But population size on its own is a poor guide to environmental damage — what matters far more is how much each person consumes. One person in a wealthy country can put more strain on the planet than a dozen people elsewhere. This page is about measuring that strain, and about a model that asks whether we can meet everyone’s needs without breaking the systems that supply them.

📚 What you need to know

Where the population is heading

The world reached 8 billion in 2022 and sits at roughly 8.2 billion today. Most projections have growth continuing but slowing: around 10 billion by about 2075, and then either stabilising or beginning a slow decline by around 2125.

Four things decide which path we actually take.

Projections normally come as three scenarios: high, medium and low fertility. The medium one is treated as most likely, but the spread between high and low by 2100 is billions of people. If a question gives you a projection, say it is a scenario, not a forecast. That single sentence often carries an evaluation mark.

Footprint against biocapacity

To compare demand and supply we use one unit: the global hectare (gha), a standard hectare of land or sea with world-average productivity.

Biocapacity balance balance = biocapacity − ecological footprint
negative = deficit  •  positive = reserve

Globally the average footprint is about 2.6 gha per person while biocapacity is around 1.5 gha per person. That is a deficit for the planet as a whole, and it is only possible because we are drawing down stocks — cutting forests faster than they regrow, and letting carbon dioxide build up rather than be absorbed.

What we take against what the land can renew Global hectares per person. Typical values, rounded. ecological footprint (demand) biocapacity (supply) gha per person 0 3 6 9 8.1 0.6 6.0 3.4 2.6 1.5 3.7 0.9 3.1 8.7 oil-rich state high income industrial world average rapidly industrialising forested, low population density Red taller than green means a biocapacity deficit. Deficits are covered by importing resources or by running the planet down.
Notice that the deficit countries are mostly the wealthy ones. High consumption, not large population, is what pushes the red bar up.

Why biocapacity is so unevenly spread

Biocapacity depends on how much productive land and sea a country has, divided by how many people share it. Large, forested, thinly populated countries such as Brazil, Canada and Sweden have plenty. Small desert states such as the UAE, and dense industrial economies such as China, have very little relative to what they use.

A country in deficit does not stop consuming. It imports the biocapacity instead, buying timber, soy, fish, metals and fuel from elsewhere. That is why a rich country can look clean and green at home while its footprint is being paid for in someone else’s forest. Many African nations have small footprints of their own yet face heavy resource extraction to supply wealthier markets.

The inequality point examiners want. The countries with the largest footprints are usually not the ones with the fastest population growth. Blaming environmental damage on population growth alone ignores who is actually doing the consuming.
WORKED EXAMPLE

A country of 12 million people has an ecological footprint of 5.4 gha per person and a biocapacity of 2.1 gha per person. Calculate the biocapacity balance per person and for the country, and comment on the result.

Step 1: balance per person 2.1 − 5.4 = −3.3 gha per person A deficit of 3.3 gha per person Step 2: scale up to the whole country 3.3 × 12 000 000 = 39 600 000 gha A national deficit of 39.6 million gha Step 3: comment 5.4 ÷ 2.1 = 2.57, so the country uses about 2.6 times what its own land and sea can renew. The gap must be met by importing resources or by depleting stocks. Negative balance = deficit. Keep the minus sign in your working; it is the difference between a reserve and a deficit.

Doughnut economics

The doughnut model asks a simple question: can everyone have a decent life without wrecking the systems that make life possible? It draws two boundaries.

Fall through the inner boundary and you have a shortfall: people whose basic needs are not met. Push past the outer boundary and you have overshoot: damage to Earth systems. The ring between them is the safe and just space for humanity.

The doughnut: two boundaries, one safe space Meet everyone’s needs without pushing Earth systems past their limits. ECOLOGICAL CEILING the planetary boundaries SHORTFALL basic needs not met below the social foundation SAFE AND JUST SPACE everyone lives well, limits respected OVERSHOOT Ceiling includes climate change biodiversity loss freshwater use land conversion ocean acidification Foundation includes food and water health and housing education and work energy and income equality and voice A country can be in shortfall and overshoot at the same time. The goal is the green ring: enough for everyone, not more than the planet can give.
The two boundaries are independent. Fixing overshoot by cutting consumption for people already in shortfall would simply push them further in.
The clever part of this model is that it refuses to treat poverty and environmental damage as separate problems. Most environmental models only draw the outer limit. Adding an inner one forces you to ask who the environment is being protected for.
WORKED EXAMPLE

Country X has near-universal healthcare, schooling and clean water, but a footprint of 6.8 gha per person. Country Y has a footprint of 0.9 gha per person, but a third of its people lack safe water and 20% of children leave school before age 12. Describe each country’s position on the doughnut.

Step 1: Country X against the inner boundary Basic needs are met, so it is above the social foundation — no shortfall. Step 2: Country X against the outer boundary 6.8 gha per person is far above what the planet can supply per person. Country X is in overshoot but not shortfall Step 3: Country Y A footprint of 0.9 gha is inside the ecological ceiling, so no overshoot. But unmet water and education needs put it below the social foundation. Country Y is in shortfall but not overshoot The fix is different in each case: X must cut consumption, Y must raise living standards without copying X’s footprint.
TermWhat it meansHow to spot it in data
Ecological footprintThe area needed to supply one person and absorb their wasteA gha per person figure for demand
BiocapacityThe area available and how productive it isA gha per person figure for supply
Biocapacity deficitFootprint larger than biocapacityNegative balance; resources imported
Biocapacity reserveBiocapacity larger than footprintPositive balance; often exports resources
OvershootHuman activity beyond a planetary boundaryOutside the ecological ceiling on the doughnut
ShortfallBasic human needs not being metInside the social foundation on the doughnut

💡 Exam tip

⚠ Common mix-ups

Up next: Dependency Ratios and Population Momentum — two calculations that explain why the age structure of a country matters as much as its size.

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