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Question 4

This question is about equilibria involving sulfur and iron compounds.

a.

Sulfur trioxide is manufactured industrially by the Contact Process. The equilibrium is shown below:

2SO2(g)+O2(g)⇌2SO3(g)ΔH=−197 kJ mol−1Equilibrium 20.1 2\text{SO}_2(\text{g}) + \text{O}_2(\text{g}) \rightleftharpoons 2\text{SO}_3(\text{g}) \quad \Delta H = -197\text{ kJ mol}^{-1} \quad \text{Equilibrium 20.1} 2SO2​(g)+O2​(g)⇌2SO3​(g)ΔH=−197 kJ mol−1Equilibrium 20.1

2.00 mol SO2(g)2.00\text{ mol }\text{SO}_2(\text{g})2.00 mol SO2​(g) is mixed with 1.00 mol O2(g)1.00\text{ mol }\text{O}_2(\text{g})1.00 mol O2​(g) in a 5.00 dm35.00\text{ dm}^35.00 dm3 container. The mixture is heated to 450 ∘C450\text{ }^\circ\text{C}450 ∘C with a vanadium(V) oxide catalyst and allowed to reach equilibrium. The equilibrium mixture contains 0.50 mol SO30.50\text{ mol }\text{SO}_30.50 mol SO3​.

Determine the equilibrium constant KcK_{\text{c}}Kc​ for Equilibrium 20.1 (including units), and explain why the operational conditions used by industry may be different from those required for a maximum equilibrium yield of sulfur trioxide.

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b.

In industry, carbon monoxide is also used to reduce iron(III) oxide as shown in Equilibrium 20.2. The reaction is carried out at high temperature.

Fe2O3(s)+3CO(g)⇌2Fe(s)+3CO2(g)Equilibrium 20.2 \text{Fe}_2\text{O}_3(\text{s}) + 3\text{CO}(\text{g}) \rightleftharpoons 2\text{Fe}(\text{s}) + 3\text{CO}_2(\text{g}) \quad \text{Equilibrium 20.2} Fe2​O3​(s)+3CO(g)⇌2Fe(s)+3CO2​(g)Equilibrium 20.2

When the temperature is increased, the value of Kp⇌K_{\text{p}}\rightleftharpoonsKp​⇌ decreases. Determine whether the forward reaction is exothermic or endothermic. Explain your answer.

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c.

Two students are discussing the effect of pressure on the equilibrium position of Equilibrium 20.2. Student 1 says: "There are more total moles of products than reactants, so increasing the pressure will shift the equilibrium to the left hand side." Student 2 disagrees. Determine which student is correct. Justify your answer.

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