IB ESS HL Topic 8 — Urban Air Pollution Paper 1 & 2 Core skill ~12 min read

Acid Deposition and Its Effects

Sulphur dioxide and nitrogen oxides do not stay where they are released. They travel with the wind, react with water and oxygen, and come back down as acid — often hundreds of kilometres away, in a country that burned none of the fuel. That is what makes acid deposition a political problem as well as a chemical one.

📚 What you need to know

What counts as acid rain

Rain is naturally acidic. Carbon dioxide in the air dissolves into raindrops to make weak carbonic acid, giving unpolluted rain a pH of roughly 5 to 5.6. Acid rain means rainfall with a pH below 5, which requires something stronger than carbon dioxide — and in practice that means nitric and sulphuric acid from human emissions.

Where acid rain sits on the pH scale Rain is never neutral. The question is how far below neutral it goes. acid rain: below pH 5 normal rain, about pH 5.6 2 3 4 5 6 7 8 neutral The scale is logarithmic: each whole unit is a ten-fold change. So pH 3.6 rain is one hundred times more acidic than pH 5.6 rain.
Because the scale is logarithmic, a drop from pH 5.6 to pH 4.6 is a much bigger change than it looks on the bar.

The chemistry

Nitric acid

Nitrogen oxides come mainly from vehicle exhausts. Nitrogen monoxide is oxidised in the air to nitrogen dioxide, which then reacts with water and oxygen to give nitric acid.

Nitric acid formation 2NO + O2 → 2NO2
4NO2 + O2 + 2H2O → 4HNO3

Sulphuric acid

Sulphur dioxide comes mainly from burning coal and heavy oil. It dissolves in water to form sulphurous acid, which is then oxidised to sulphuric acid.

Sulphuric acid formation SO2 + H2O → H2SO3
2H2SO3 + O2 → 2H2SO4
If you can only remember one thing about the chemistry, remember which pollutant comes from where: nitrogen oxides from traffic, sulphur dioxide from coal. That single fact lets you predict which acid dominates in a given country, and which control measure would help most.

Wet and dry deposition

The journey of an acid molecule Released in one place, deposited in another, often across a border. prevailing wind SO2, NOx nitric acid sulphuric acid wet deposition dry deposition soil leached lake acidified forest damaged The damage is often worst where nothing was ever burned. That is why acid deposition needs international agreements, not just local rules.
Dry deposition lands near the source; wet deposition travels with the cloud. The same chimney can damage a nearby car park and a forest in another country.

Effects on ecosystems

Soils and forests

Lakes and rivers

Two mechanisms, not one. Acid harms life directly by lowering pH, and indirectly by dissolving aluminium out of the soil. The indirect route often does more damage, and mentioning both is what separates a full answer from a half one.

Buildings and infrastructure

Marble and limestone are made of calcium carbonate, which reacts with sulphuric acid. The stone surface dissolves, blisters and crumbles, and detail on carvings is lost permanently.

Stonework corrosion CaCO3 + H2SO4 → CaSO4 + H2O + CO2

Metal structures corrode and rust faster, and paint degrades. The Taj Mahal in India, built of marble, has shown erosion and discolouration linked to acid deposition, and historic statues and buildings in Rome and Greece have suffered the same way.

Human health

Acid rain does not burn people. The harm is indirect: the same emissions produce fine nitrate and sulphate particles, which are PM2.5. These reach deep into the lungs, causing tissue damage and inflammation and raising the risk of asthma and bronchitis. Regions with heavy industry, including parts of China and Eastern Europe, carry higher respiratory risks as a result.

WORKED EXAMPLE

Rain over an industrial region is measured at pH 3.6. Unpolluted rain is about pH 5.6. Calculate how many times more acidic the polluted rain is, and explain why this matters for a lake.

Step 1: find the difference in pH units 5.6 − 3.6 = 2 pH units Step 2: apply the logarithmic scale Each unit is a ten-fold change in hydrogen ion concentration. 102 = 100 100 times more acidic Step 3: why it matters Most freshwater fish struggle below about pH 5, and at pH 4 or lower few species survive. Dissolved aluminium also rises sharply as pH falls, so the water becomes toxic as well as acidic. Lakes on granite have little natural buffering, so they acidify quickly; lakes on limestone resist for much longer.
WORKED EXAMPLE

Explain how emissions from a coal-fired power station in one country can kill fish in a lake in another country.

Step 1: emission Burning coal releases sulphur dioxide from sulphur impurities in the fuel. Step 2: transport Tall chimneys push the gas high into the atmosphere, where prevailing winds carry it hundreds of kilometres across borders. Step 3: reaction SO2 + H2O gives H2SO3, which is oxidised to H2SO4 in cloud droplets. Step 4: deposition and effect The acid falls as wet deposition, lowering lake pH and dissolving aluminium from surrounding soils. The aluminium irritates fish gills, which produce mucus and can no longer absorb oxygen. The fish suffocate, in a country that burned none of the coal The phrase to use is transboundary pollution. It is exactly what the question is testing.

Managing acid deposition

Use the same three levels from the previous page.

LevelStrategyComment
1. Alter human activitySwitch to renewables and nuclear; reduce fossil fuel demand; international agreements to cut emissionsThe only permanent fix, but slow and politically difficult
2. Control the releaseScrubbers on power station chimneys; catalytic converters on vehicles; low-sulphur fuels; emission limitsEffective and fast; sulphur emissions in Europe and North America fell sharply this way
3. Clean up and restoreSpreading ground limestone or lime on acidified lakes and soils; replanting acid-tolerant vegetationTreats the symptom; must be repeated, and does not stop the acid arriving
Acid deposition is one of the genuine environmental success stories. Sulphur dioxide emissions in Europe and North America fell dramatically from the 1980s onwards through scrubbers, low-sulphur fuel and international agreements, and many damaged lakes have recovered. It is worth saying so — it shows the management levels actually work when they are applied.

💡 Exam tip

⚠ Common mix-ups

Up next: How Photochemical Smog Forms — the HL material on what sunlight does to traffic fumes, and why some cities get trapped under their own pollution.

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