IB ESS HL Topic 6 — Atmosphere & Climate Change Paper 1 & 2 Core idea ~11 min read

How the Greenhouse Effect Works

The greenhouse effect is not the problem. It is the reason Earth is not a frozen rock. The problem is that we have made it stronger than it was, and every mark in this section depends on you keeping those two ideas apart.

📚 What you need to know

The step-by-step process

🧩 What actually happens to the energy

  1. The Sun emits energy as solar radiation, including visible light and UV.
  2. This radiation enters the atmosphere. Some is reflected straight back from the surface, clouds and ice.
  3. Most is absorbed by Earth’s surface, warming it.
  4. The warmed surface re-emits that energy at longer wavelengths as infrared radiation.
  5. Some of that infrared passes through the atmosphere and escapes into space.
  6. Some is absorbed by greenhouse gases and re-emitted in all directions, so a share returns to the surface.
  7. Less energy is lost to space than would otherwise be, so the surface stays warm.
The whole mechanism turns on one fact: greenhouse gases are nearly transparent to incoming short-wave radiation but opaque to outgoing long-wave radiation. Energy gets in easily and leaves with difficulty. Write that sentence and you have the concept.
The numbers to quote Actual average surface temperature ≈ 15 °C
Without any greenhouse effect ≈ −18 °C
So the natural greenhouse effect is worth about 33 °C of warming

Natural versus enhanced

NATURAL vs ENHANCED GREENHOUSE EFFECT Same process, thicker blanket NATURAL ENHANCED plenty of heat escapes less heat escapes thin layer of greenhouse gases thicker layer: more greenhouse gases steady at about 15 °C more heat returned: warming Earth’s surface Earth’s surface Yellow arrows in, red arrows out — count how many red ones escape The extra gas does not add energy; it slows the rate at which energy leaves
Nothing about the mechanism changes between the panels. Only the concentration of absorbing gas changes, and with it the proportion of outgoing infrared that gets sent back down.

The greenhouse gases

GasWhere it comes fromWhat makes it notable
Water vapourEvaporation from oceans, lakes and rivers; transpiration from plants; sublimation from ice and snow; fossil fuel combustionThe most abundant greenhouse gas. Its concentration depends on temperature, so it amplifies the effect of the others rather than driving change itself. Usually left out of mitigation because it cannot be controlled directly
Carbon dioxideBurning coal, oil and natural gas; deforestation releasing stored carbon; industrial processes such as cement productionThe main driver of the enhanced effect because of its high concentration and long lifespan in the atmosphere
MethaneLivestock digestion, landfills, natural gas extraction, rice paddies, wetlandsTraps heat far more effectively than carbon dioxide per molecule, but is present in much lower concentrations so its total effect is smaller
Nitrous oxidesSynthetic and organic fertiliser use, fossil fuel combustion, industrial processesExtremely potent per molecule, again offset by very low concentration
Potency versus concentration: methane and nitrous oxide are much stronger per molecule than carbon dioxide, but there is far less of them. Total warming effect = potency × amount. Say both halves and you will not lose the mark.

The water vapour feedback

This is the loop worth understanding properly. A warmer atmosphere holds more water vapour. More water vapour absorbs more infrared, which warms the atmosphere further, which lets it hold still more water vapour. That is a positive feedback loop, and it is why water vapour is described as amplifying the effect of the other gases rather than starting the change.

Aerosols

Aerosols are tiny particles or droplets suspended in the air. The one to know is black carbon:

WORKED EXAMPLE

Earth’s mean surface temperature is about 15 °C. Calculations suggest it would be about −18 °C with no greenhouse effect. Calculate the warming produced by the natural greenhouse effect, and explain why the enhanced greenhouse effect is still a problem. [4]

Step 1: subtract 15 − (−18) = 33 The natural greenhouse effect provides about 33 °C of warming Step 2: explain why more is not better Ecosystems, agriculture and human settlements are adapted to the current range, not to a warmer one. Step 3: the rate matters The change is happening over decades, not tens of thousands of years, so species and societies cannot adapt in time. Watch the double negative in the subtraction. Losing the minus sign turns 33 into −3.

💡 Exam tip

⚠️ Common mix-up

Up next: How the Atmosphere Moves (HL) — uneven heating, circulation cells, and the ozone cycle in the stratosphere.

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