Preparation of Potassium Dichromate and Potassium Permanganate

What is Potassium Dichromate?

Potassium dichromate or anhydrochromate is prepared by adding to the neutral yellow chromate of potassium in solution, a moderate quantity of one of the stronger acids.

Potassium permanganate is commercially prepared by mixing a solution of potassium hydroxide and powdered manganese oxide with oxidizing agents like potassium chlorate.

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Preparation of Potassium Dichromate - K2Cr2O7

The reaction can be given as:

4FeCr2O4 + 8Na2CO3 + 7O2 → 8Na2CrO4 + 2Fe2O3 + 8CO2

The solution of sodium chromate (Na2CrO4) is further purified with sulphuric acid to form a solution from which the crystals of orange coloured sodium dichromate (Na2Cr2O7.2H2O) can be extracted.

2Na2CrO4 + 2H+ → Na2Cr2O7 + 2Na+ + H2O

Now potassium dichromate can be obtained by reacting a solution of sodium dichromate with potassium chloride.

Na2Cr2O7 + 2KCl → K2Cr2O7 + 2NaCl

Thus, we finally obtain the orange crystals of potassium dichromate.

Structure of Potassium Dichromate Molecules

Potassium dichromate is an ionic compound consisting of two potassium cations and one dichromate anion. The coordination geometries around the chromium atoms are tetrahedral. The structure of a potassium dichromate molecule is illustrated below.

Potassium Dichromate Structure

It can be noted that in the potassium dichromate molecule, potassium exhibits an oxidation state of +1, oxygen exhibits an oxidation state of -2 and chromium exhibits an oxidation state of +6. It can be noted that crystals of potassium dichromate have a triclinic structure.

Preparation of Potassium Permanganate - KMnO4

We can get this (KMnO4) by reacting MnO2 with an alkali metal hydroxide and KNO3 (oxidizing agent).

This will result in the production of dark green K2MnO4 which is disproportionate in an acidic or neutral medium to give permanganate.

2MnO2 + 4KOH + O2 → 2K2MnO4 + 2H2O

3MnO42- + 4H+ → 2MnO4- + MnO2 + 2H2O

Therefore, the preparation of potassium permanganate involves a reaction of MnO2 with KOH to give MnO42- followed by electrolytic oxidation of manganate to give permanganate ion, MnO4-.

After this manganese ion salt gets oxidized by peroxodisulphate to permanganate ion as per the reaction given below.

2Mn2+ + 5S2O82- + 8H2O → 2MnO4- +10SO42- + 16H+

Thus the dark purple coloured crystals of potassium permanganate are obtained.

2KMnO4 → K2MnO4 + MnO2 + O2

Properties of K2Cr2O7 & KMnO4

1. Properties of Potassium Dichromate, K2Cr2O7

4K2Cr2O7 → 4K2CrO4 + 2CrO3 + 3O2

Cr2O72- + 14H+ + 6I- → 2Cr3+ + 7H2O + 3I2

2. Properties of Potassium permanganate, KMnO4

2KMnO4 → K2MnO4 + MnO2 + O2

Applications of Potassium Dichromate

The primary application of K2Cr2O7 is in the preparation of potassium chrome alum, a compound which is used extensively in the tanning of leather. Chromic acid can also be prepared from this compound. Potassium dichromate is known to be used in the production of cement since it improves the texture and the density of the cement mixture.

Another important application of potassium dichromate is in the photography industry, where it is used in combination with a powerful mineral acid as an oxidizing agent for photographic screen printing. Since it is non-hygroscopic in nature, this compound is also employed for several wet tests in the field of analytical chemistry.

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