To determine the presence of anion and cation in the given salt
| Experiment | Observation | Inference |
|---|---|---|
| Take 0.1 g of salt, add 1–2 mL of dilute H₂SO₄ | Colourless odourless gas is evolved with brisk effervescence; lime water turns milky | CO₃²⁻ may be present |
| Confirmatory Tests | ||
| Lime Water Test Pass the gas through lime water | Lime water turns milky; milkiness disappears on excess gas | CO₃²⁻ is confirmed |
| Sodium Nitroprusside Test Take 1 mL water extract or sodium carbonate extract, make it alkaline with dilute NH₄OH, then add a drop of sodium nitroprusside | Purple or violet colouration is produced | CO₃²⁻ is confirmed |
| Experiment | Observation | Inference |
|---|---|---|
| Original solution + NH₄OH solution | Reddish-brown precipitate | Group-III cation may be present |
| Confirmatory Tests | ||
| Potassium Ferrocyanide Test Dissolve the precipitate in dilute HCl, divide into two parts and add potassium ferrocyanide to one part | Blue/Prussian blue precipitate | Fe³⁺ is confirmed |
| Potassium Thiocyanate Test To second part add potassium thiocyanate solution | Blood-red colouration is formed | Fe³⁺ is confirmed |
The given salt contains Fe³⁺ ions as cation and CO₃²⁻ ions as anion. The salt is (Fe)₂(CO₃)₃.