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NCERT Exemplar · Q60

Q.Match the catalysts given in Column I with the processes given in Column II.
Column I (Catalyst):

(i) Ni in the presence of hydrogen
(ii) Cu2Cl2Cu_2Cl_2
(iii) V2O5V_2O_5
(iv) Finely divided iron
(v) TiCl4+Al(CH3)3TiCl_4 + Al(CH_3)_3
Column II (Process):
(a) Zieglar Natta catalyst
(b) Contact process
(c) Vegetable oil to ghee
(d) Sandmeyer reaction
(e) Haber's Process
(f) Decomposition of KClO3KClO_3
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This is a matching problem linking industrial catalysts to their processes. The correct matches are: (i)→(c), (ii)→(d), (iii)→(b), (iv)→(e), (v)→(a).

The key to solving this is not memorising a list, but understanding what each catalyst does in its reaction. A catalyst lowers the activation energy for a specific transformation — so if you know the transformation, you know the catalyst.

Let’s walk through each catalyst one by one.

  1. Ni in the presence of hydrogen — This is the classic condition for the hydrogenation of unsaturated fats. Vegetable oils (which contain carbon-carbon double bonds) are treated with hydrogen gas over a nickel catalyst to produce semi-solid fats like ghee or margarine. So (i) matches with (c) Vegetable oil to ghee.

  2. Cu2Cl2Cu_2Cl_2 — Cuprous chloride is used in the Sandmeyer reaction, where a diazonium salt is converted to an aryl chloride. The copper(I) chloride acts as a catalyst that facilitates the replacement of the diazonium group (−N2+-N_2^+) with a chlorine atom. So (ii) matches with (d) Sandmeyer reaction.

  3. V2O5V_2O_5 — Vanadium pentoxide is the catalyst for the Contact process, which manufactures sulfuric acid. In this process, SO2SO_2 is oxidised to SO3SO_3 in the presence of V2O5V_2O_5 as the catalyst. So (iii) matches with (b) Contact process.

  4. Finely divided iron — This is the catalyst used in the Haber’s process for the synthesis of ammonia from nitrogen and hydrogen. Iron (often promoted with oxides of potassium and aluminium) provides the surface for the reaction N2+3H2⇌2NH3N_2 + 3H_2 \rightleftharpoons 2NH_3. So (iv) matches with (e) Haber's Process. …

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