STUDENT SPACE · TOPIC 3
Sulfur compounds and the Contact process
Explain sulfur trioxide formation and link sulfur emissions to control methods.
The essentials
- Burning sulfur or roasting sulfide ores provides SO₂ for the Contact process. Oxygen comes from air.
- 2SO₂(g) + O₂(g) ⇌ 2SO₃(g). The forward reaction is exothermic.
- Lower temperature favours SO₃ but slows the reaction. Higher pressure favours the side with fewer gas molecules.
Key vocabulary
| English | Chinese |
|---|
| sulfur dioxide | 二氧化硫 |
| Contact process | 接触法 |
| vanadium(V) oxide | 五氧化二钒 |
Quick practice
Try each question before opening its hint or answer. Use paper for calculations and diagrams.
Question 1
Would very high pressure improve SO₃ equilibrium yield? Why is it not normally used?
Need a hint for Question 1?
Write the balanced gas equation. Count gas molecules on each side.
Check Question 1
Yes, it favours fewer gas molecules. A good yield already occurs near 2 atm, so the extra cost and risk are not justified.
Question 2
State the Contact catalyst, temperature and pressure.
Need a hint for Question 2?
Recall the conditions for SO₂ oxidation, not ammonia production.
Check Question 2
Vanadium(V) oxide; 450 °C; 2 atm (200 kPa).
Question 3
Explain why calcium oxide can remove sulfur dioxide from waste gas.
Need a hint for Question 3?
Compare the acid–base character of CaO and SO₂.
Check Question 3
CaO is basic and reacts with acidic SO₂, reducing SO₂ emissions and acid rain.
Use Lesson 3 in your worksheet for written practice. Your teacher will discuss those answers in class.
← All Chapter 16 topics