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9701 · 12.1

Nitrogen and sulfur

Normally unreactive gases in our atmosphere, nitrogen and sulfur, can be transformed by heat and industry into pollutants. These pollutants then react with water in the air to form acid rain, impacting our environment.

Need to know

What you need to know

  • **High Pressure (~200 atm):** Favours the forward reaction as there are fewer moles of gas on the product side (Le Chatelier's principle).
  • **Moderate Temperature (~450 °C):** A compromise. Lower temperatures favour the exothermic forward reaction, but the rate would be too slow. 450 °C provides a reasonable rate and acceptable yield.
  • **Iron Catalyst:** Increases the rate of both forward and reverse reactions, allowing equilibrium to be reached faster at a lower temperature. It does not affect the position of equilibrium.

Explanation

From Air to Acid Rain

  1. N₂ triple bond — inert at room T; Haber process: N₂ + 3H₂ ⇌ 2NH₃. | Sim hint: High T, pressure, catalyst needed.
  2. NO, NO₂ from lightning/combustion — acid rain and photochemical smog. | Sim hint: NO₂ + H₂O → HNO₃ + HNO₂ pathway.
  3. SO₂ from fossil fuels → SO₃ → H₂SO₄ in rain. | Sim hint: Contact process: 2SO₂ + O₂ ⇌ 2SO₃.
  4. Test for NH₃: damp red litmus blue; SO₂: acidified K₂Cr₂O₇ green. | Sim hint: Link tests to gas properties.