
Ferric alum gives red colour with \[{\text{N}}{{\text{H}}_{\text{4}}}{\text{SCN}}\] due to formation of:
A. \[{\text{Al}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
B. \[{\text{FeS}}{{\text{O}}_{\text{4}}}\]
C. \[{\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
D. \[{\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{2}}}\]
Answer
557.1k+ views
Hint:Ferric alum will react with thiocyanate ion to form a red color complex. In this complex, there is no change in the oxidation state of iron as this is not a redox reaction. It is a complex formation reaction.
Complete answer:
Ferric alum contains ferric \[\left( {{\text{F}}{{\text{e}}^{3 + }}} \right)\] ions. Ferric alum is a double salt containing ammonium sulphate and ferric sulphate. The chemical formula of ferric alum is \[{\left( {{\text{N}}{{\text{H}}_{\text{4}}}} \right)_2}{\text{S}}{{\text{O}}_4} \cdot {\text{F}}{{\text{e}}_2}{\left( {{\text{S}}{{\text{O}}_4}} \right)_3} \cdot 24{{\text{H}}_2}{\text{O}}\]
Ferric alum is used as an indicator in the Volhard method. We can use the Volhard method for the titration of silver chloride with ammonium thiocyanate. In an acidic medium, \[{\text{A}}{{\text{g}}^ + }\] ions react with ammonium thiocyanate to form a precipitate of silver thiocyanate. After complete precipitation of \[{\text{A}}{{\text{g}}^ + }\] ions, the excess titrant (ammonium thiocyanate) reacts with ferric ions from ferric alum to form soluble red complex. Here ferric alum is used as an indicator. The red coloured complex is due to the formation of ferric thiocyanate \[{\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
\[{\text{F}}{{\text{e}}^{3 + }}{\text{ + 3SC}}{{\text{N}}^ - } \to {\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
Thus, one mole of ferric ions reacts with three moles of thiocyanate ions to form one mole of ferric thiocyanate complex. Ferric ions are from ferric alum and thiocyanate ions are from ammonium thiocyanate.
Additional information:
The oxidation number of iron in ferric alum is +3. The oxidation number of iron in red coloured complex ferric thiocyanate is also +3. Thus, during complex formation reactions, there is no change in the oxidation number.
Hence the correct answer is option ‘C’.
Note: We can use Volhard method for the determination of chloride, bromide and iodide ions in acidic medium. We cannot use basic medium as ferric ions will hydrolyze in basic medium.
Complete answer:
Ferric alum contains ferric \[\left( {{\text{F}}{{\text{e}}^{3 + }}} \right)\] ions. Ferric alum is a double salt containing ammonium sulphate and ferric sulphate. The chemical formula of ferric alum is \[{\left( {{\text{N}}{{\text{H}}_{\text{4}}}} \right)_2}{\text{S}}{{\text{O}}_4} \cdot {\text{F}}{{\text{e}}_2}{\left( {{\text{S}}{{\text{O}}_4}} \right)_3} \cdot 24{{\text{H}}_2}{\text{O}}\]
Ferric alum is used as an indicator in the Volhard method. We can use the Volhard method for the titration of silver chloride with ammonium thiocyanate. In an acidic medium, \[{\text{A}}{{\text{g}}^ + }\] ions react with ammonium thiocyanate to form a precipitate of silver thiocyanate. After complete precipitation of \[{\text{A}}{{\text{g}}^ + }\] ions, the excess titrant (ammonium thiocyanate) reacts with ferric ions from ferric alum to form soluble red complex. Here ferric alum is used as an indicator. The red coloured complex is due to the formation of ferric thiocyanate \[{\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
\[{\text{F}}{{\text{e}}^{3 + }}{\text{ + 3SC}}{{\text{N}}^ - } \to {\text{Fe}}{\left( {{\text{SCN}}} \right)_{\text{3}}}\]
Thus, one mole of ferric ions reacts with three moles of thiocyanate ions to form one mole of ferric thiocyanate complex. Ferric ions are from ferric alum and thiocyanate ions are from ammonium thiocyanate.
Additional information:
The oxidation number of iron in ferric alum is +3. The oxidation number of iron in red coloured complex ferric thiocyanate is also +3. Thus, during complex formation reactions, there is no change in the oxidation number.
Hence the correct answer is option ‘C’.
Note: We can use Volhard method for the determination of chloride, bromide and iodide ions in acidic medium. We cannot use basic medium as ferric ions will hydrolyze in basic medium.
Recently Updated Pages
Why are manures considered better than fertilizers class 11 biology CBSE

Find the coordinates of the midpoint of the line segment class 11 maths CBSE

Distinguish between static friction limiting friction class 11 physics CBSE

The Chairman of the constituent Assembly was A Jawaharlal class 11 social science CBSE

The first National Commission on Labour NCL submitted class 11 social science CBSE

Number of all subshell of n + l 7 is A 4 B 5 C 6 D class 11 chemistry CBSE

Trending doubts
1 Quintal is equal to a 110 kg b 10 kg c 100kg d 1000 class 11 physics CBSE

What is Environment class 11 chemistry CBSE

Bond order ofO2 O2+ O2 and O22 is in order A O2 langle class 11 chemistry CBSE

How many squares are there in a chess board A 1296 class 11 maths CBSE

Distinguish between verbal and nonverbal communica class 11 english CBSE

The equivalent weight of Mohrs salt FeSO4 NH42SO4 6H2O class 11 chemistry CBSE

