Question:

Which of these reactions is not a part of breakdown of ozone in stratosphere?

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The breakdown of ozone in the stratosphere involves a catalytic cycle where chlorine atoms and chlorine monoxide are continuously regenerated to destroy ozone. Reactions outside this cycle are not part of the process.

Updated On: Mar 20, 2025
  • \(CF_2Cl_2(g)\xrightarrow{uv}\dot{C}l(g)+\dot{C}F_2Cl(g)\)
  • \(C\dot{l}(g)+O_3(g)\rightarrow Cl\dot{O}(g)+O_2(g)\)
  • \(Cl\dot{O}(g)+O(g)\rightarrow C\dot{l}(g)+O_2(g)\)
  • \(2Cl\dot{O}\rightarrow ClO_2(g)+C\dot{l}(g)\)
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The Correct Option is D

Solution and Explanation

Breakdown of Ozone in the Stratosphere: 

The breakdown of ozone in the stratosphere involves the following steps:

  1. Initiation: Chlorofluorocarbons (CFCs), such as CF2Cl2, are photodissociated by ultraviolet radiation to release chlorine atoms.
    CF2Cl2(g) \( \xrightarrow{\text{uv}} \) CF2Cl(g) + Cl(g)
  2. Ozone Destruction (Catalytic Cycle):
    (a) Chlorine atoms react with ozone molecules to produce chlorine monoxide (ClO) and oxygen gas:
    Cl(g) + O3(g) → ClO(g) + O2(g)
    (b) Chlorine monoxide reacts with atomic oxygen to regenerate chlorine atoms and produce more oxygen gas:
    ClO(g) + O(g) → Cl(g) + O2(g)
  3. Net Reaction: The overall reaction destroys ozone while regenerating chlorine atoms, allowing the cycle to continue:
    O3 + O → 2O2

Analysis of Options:

  1. Option (1): This reaction represents the photodissociation of CF2Cl2, which is part of the initiation step in ozone breakdown. This is correct.
  2. Option (2): This reaction shows chlorine reacting with ozone to form chlorine monoxide and oxygen gas, which is part of the catalytic cycle. This is correct.
  3. Option (3): This reaction shows chlorine monoxide reacting with atomic oxygen to regenerate chlorine and produce oxygen gas, which is part of the catalytic cycle. This is correct.
  4. Option (4): This reaction suggests that two chlorine monoxide molecules react to form ClO2 and Cl. This does not occur in the stratosphere and is not part of the catalytic cycle. This is incorrect.

The correct answer is option (3).

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