A proposed mechanism for ozone destruction in the late spring over northern latitudes in the lower stratosphere begins with the photochemical decomposition of CIONO₂ to Cl and NO3, followed by photochemical decomposition of the latter to NO and 0₂. Deduce a catalytic Ozone destruction cycle, requiring no atomic oxygen.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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A proposed mechanism for ozone destruction in the late spring over northern latitudes in the
lower stratosphere begins with the photochemical decomposition of CIONO₂ to Cl and NO3,
followed by photochemical decomposition of the latter to NO and O₂. Deduce a catalytic
ozone destruction cycle, requiring no atomic oxygen.
Transcribed Image Text:A proposed mechanism for ozone destruction in the late spring over northern latitudes in the lower stratosphere begins with the photochemical decomposition of CIONO₂ to Cl and NO3, followed by photochemical decomposition of the latter to NO and O₂. Deduce a catalytic ozone destruction cycle, requiring no atomic oxygen.
Expert Solution
Step 1: CATALYTIC DESTRUCTION OF OZONE, REQUIRING NO ATOMIC OXYGEN

We nee to deduce a catalytic destruction cycle of ozone without the involvement of atomic ozone.

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