To determine the presence of anion and cation in the given salt
| Experiment | Observation | Inference |
|---|---|---|
| Warm the solid salt with dilute H₂SO₄ | Brown fumes of NO₂ are evolved | NO₂⁻ may be present |
| Confirmatory Tests | ||
| Potassium Iodide Starch Test Take evolved gas and add KI + starch solution acidified with acetic acid | Blue colour appears | NO₂⁻ is confirmed |
| Sulphanilic Acid / 1-Naphthylamine Test Acidify 1 mL of water extract with acetic acid and add sulphanilic acid solution followed by 1-naphthylamine reagent | Red colour is formed | NO₂⁻ 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 NO₂⁻ ions as anion. The salt is Fe(NO₂)₃.