Q.Indicate the steps in the preparation of:
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Start your 14-day free trial to unlock the full solution →Both and are prepared by first converting the ore into a water-soluble intermediate (sodium chromate or potassium manganate) via fusion with an alkali and an oxidising agent, followed by acidification or electrolytic oxidation to get the final dichromate or permanganate.
(i) Preparation of from chromite ore
Concept and intuition: Chromite ore () contains chromium in the +3 oxidation state. To make dichromate (where Cr is +6), we need to oxidise it. The trick is to first convert the insoluble ore into a water-soluble chromate salt by fusing it with an alkali (like ) in the presence of air (oxygen). This step also separates chromium from iron, which remains as insoluble oxide. Once we have sodium chromate in solution, we acidify it to get sodium dichromate, and then use a double displacement reaction with KCl to precipitate the less soluble potassium dichromate.
Step-by-step:
- Fusion of chromite ore: The finely powdered ore is mixed with sodium carbonate () and a small amount of quicklime (, to keep the mass porous) and roasted in a reverberatory furnace in a current of air. The reaction is:
Here, is oxidised: (as ) and (as ). The sodium chromate is water-soluble, while and any unreacted ore settle out.
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Leaching and filtration: The fused mass is cooled and treated with hot water. Sodium chromate dissolves, leaving behind a red-brown residue of ferric oxide. The solution is filtered to get a clear yellow solution of .
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Conversion to dichromate: The sodium chromate solution is acidified with concentrated sulphuric acid. In acidic medium, chromate () converts to dichromate ():
The colour changes from yellow (chromate) to orange (dichromate). This step is driven by the equilibrium shift: in acidic solution, dichromate is the stable form.
- Double decomposition with KCl: To get the potassium salt, we add a calculated amount of potassium chloride () to the concentrated solution of sodium dichromate. Because is less soluble than at lower temperatures, it crystallises out:
The orange crystals of are filtered, washed with a little cold water, and dried.
A common mistake is to think that is directly obtained from the ore. Remember: the ore gives sodium chromate first; the potassium salt is obtained only after a metathesis reaction. Also, acidification must be done after removing iron oxide — otherwise, may contaminate the product.
The key to remembering the sequence: Fuse → Leach → Acidify → Metathesis. The fusion step is what makes the ore "soluble" — think of it as unlocking the chromium from the mineral lattice.
(ii) Preparation of from pyrolusite ore
Concept and intuition: Pyrolusite () contains manganese in the +4 state. To get permanganate (), where Mn is +7, we need a strong oxidation. The classic route is to first fuse with an alkali (KOH) and an oxidising agent (like or air) to form potassium manganate (, green, Mn +6). Then, this manganate is oxidised further to permanganate (purple, Mn +7) — either by electrolytic oxidation or by chemical oxidation (e.g., with chlorine or ozone). The electrolytic method is preferred industrially because it's cleaner and gives high purity.
Step-by-step:
- Fusion of pyrolusite: Finely powdered is mixed with potassium hydroxide () and an oxidising agent like potassium nitrate () or potassium chlorate (), and heated strongly in a furnace. The reaction is:
(If is used: )
The green mass of potassium manganate is formed. This step oxidises Mn from +4 to +6.
- Leaching: The fused green mass is cooled and treated with a small amount of water (or dilute KOH) to dissolve . The solution is filtered to remove any insoluble impurities. The filtrate is a deep green solution of potassium manganate. …
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