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NCERT Exemplar · Q96

Q.Some halogen containing compounds are useful in daily life. Some compounds of this class are responsible for exposure of flora and fauna to more and more of UV light which causes destruction to a great extent. Name the class of these halocompounds. In your opinion, what should be done to minimise harmful effects of these compounds.

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The class is chlorofluorocarbons (CFCs) — their ozone-depleting action increases UV exposure. Minimising their use and switching to eco-friendly refrigerants is the key solution.

Why This Matters

The question connects two things: a specific class of halogen compounds that we use daily, and a global environmental problem — increased UV radiation reaching the Earth. The link is ozone layer depletion. Halogen compounds that are stable enough to reach the stratosphere can release chlorine or bromine atoms, which catalytically destroy ozone. With less ozone, more UV-B light penetrates, harming both plants and animals (including humans, through skin cancer and cataracts).

The compounds in question are chlorofluorocarbons (CFCs) — used in refrigerators, air conditioners, aerosol propellants, and foam-blowing agents. They were once considered miracle chemicals because they were non-toxic, non-flammable, and chemically inert near the ground. That very stability lets them drift up to the stratosphere unchanged, where UV light finally breaks them apart.

Step-by-Step Reasoning

  1. Identify the class from the description

    The question says: "Some halogen containing compounds are useful in daily life" and "responsible for exposure of flora and fauna to more and more of UV light". The only class of halocompounds that causes increased UV exposure is the one that depletes the ozone layer. That class is chlorofluorocarbons (CFCs). Other halocompounds like halons (containing bromine) also deplete ozone, but CFCs are the most widely used and well-known.

  2. Understand the mechanism (why they cause UV increase)

    CFCs (e.g., CCl3F\text{CCl}_3\text{F}, CCl2F2\text{CCl}_2\text{F}_2) are photolysed in the stratosphere by UV light:

CCl2F2→hνCClF2+Cl\text{CCl}_2\text{F}_2 \xrightarrow{h\nu} \text{CClF}_2 + \text{Cl}

The chlorine atom then reacts with ozone:

Cl+O3→ClO+O2\text{Cl} + \text{O}_3 \rightarrow \text{ClO} + \text{O}_2

ClO+O→Cl+O2\text{ClO} + \text{O} \rightarrow \text{Cl} + \text{O}_2

The net reaction is O3+O→2O2\text{O}_3 + \text{O} \rightarrow 2\text{O}_2, with chlorine acting as a catalyst. One chlorine atom can destroy thousands of ozone molecules before being removed.

  1. Name the class

    The class is chlorofluorocarbons (CFCs). In exam language, they are also called Freons (a trade name). The question expects the name "chlorofluorocarbons" or "CFCs".

  2. What should be done to minimise harmful effects?

    This is an opinion-based part, but it must be scientifically sound. The core idea: stop releasing CFCs into the atmosphere. Practical steps include:

    • Ban production and use of CFCs under international agreements like the Montreal Protocol (1987). This has already been done successfully. …

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