Chemistry

Isolation of Elements

Question:

Which of the following reaction is an example of autoreduction?
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-3
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-4

Answer:


ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-5
This reaction includes reduction of copper (I) oxide by copper (I) sulphide. In this process, copper is reduced by itself hence this process is known as autoreduction and the solidified copper so, obtained is known as blister copper.

previuos
next

Isolation of Elements

Q 1.

How is leaching carried out in case of low grade copper ores?

Q 2.

What is meant by the term "chromatography"?

Q 3.

Assertion (A): Zirconium can be purified by van Arkel method.
Reason (R): ZrI4 is volatile and decomposes at 1800 K.

Q 4.

The main reactions occurring in blast furnace during extraction of iron from haematite are
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-19

Q 5.

What is the role of cryolite in the metallurgy of aluminium?

Q 6.

The value of ΔfG ° for formation of Cr2O3 is – 540 kJ mol-1 and that of Al203 is – 827 kJ mol-1 . Is the reduction of Cr2O3 possible with Al?

Q 7.

In the extraction of chlorine by electrolysis of brine,
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-1

Q 8.

Extraction of gold and silver involves leaching the metal with CN+ ion. The metal is recovered by
(a) displacement of metal by some other metal from the complex ion
(b) roasting of metal complex
(c) calcinations followed by roasting
(d) thermal decomposition of metal complex

Q 9.

Why is sulphide ore of copper heated in a furnace after mixing with silica? Iron oxide present as impurity in sulphide ore of copper forms a slag of iron silicate and copper is produced in the form of copper matte.

Q 10.

t the temperature corresponding to which of the points in figure of Q. 11-13, FeO will be reduced to Fe by coupling the reaction 2FeO —> 2Fe + 02 with all of the following reactions?
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-15

Q 11.

Give two requirements for vapour phase refining.

Q 12.

Match the items of Column I with the items of Column II and assign the correct code:
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-38

Q 13.

Which of the following statements are correct?
(a) A depressant prevents certain type of particle to come to the froth.
(b) Copper matte contains Cu2S and ZnS.
(c) The solidified copper obtained from reverberatory furnace has blistered appearance due to evolution of SO2 during the extraction.
(d) Zinc can be extracted by self-reduction.

Q 14.

The purest form of iron is prepared by oxidizing impurities from cast iron in a reverberatory furnace. Which iron ore is used to line the furnace? Explain by giving reaction.

Q 15.

Why are sulphide ores converted to oxide before reduction?

Q 16.

Assertion (A): Hydrometallurgy involves dissolving the ore in a suitable reagent followed by precipitation by a more electropositive metal.
Reason (R): Copper is extracted by hydrometallurgy.

Q 17.

Which of the following statements are correct about the role of substances added in the froth floatation process?
(a) Collectors enhance the non-wettability of the mineral particles.
(b) Collectors enhance the wettability of gangue particles.
(c) By using depressants in the process two sulphide ores can be separated.
(d) Froth stabilizers decrease wettability of gangue.

Q 18.

Which of the following ores are concentrated by froth floatation?
(a) Haematite (b) Galena
(c) Copper pyrites (d) Magnetite

Q 19.

Which of the following reactions occur during calcination?
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-17

Q 20.

Match the items of Column I with the items of Column II and assign the correct code:
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-39

Q 21.

Match the items of Column I with items of Column II and assign the correct code:
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-40

Q 22.

Explain:
(i)Zone refining
(ii)Column chromatography.

Q 23.

Write chemical reactions taking place in the extraction of zinc from zinc blende.

Q 24.

Why is an external emf of the more than 2.2 V required for the extraction of Cl2  from brine?

Q 25.

Predict conditions under which Al might be expected to reduce MgO.

Q 26.

Write down the reactions taking place in different zones in the blast furnace during the extraction of iron.

Q 27.

Describe a method for refining nickel.

Q 28.

Why is zinc not extracted from zinc oxide through reduction using CO?

Q 29.

Name the processes from which chlorine is obtained as a by-product What will happen if an aqueous solution of NaCl is subjected to electrolysis?

Q 30.

Brine is electrolysed by using inert electrodes. The reaction at anode is
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-7

Q 31.

Which of the following options are correct?
(a) Cast iron is obtained by remelting pig iron with scrap iron and coke using hot air blast.
(b) In extraction of silver, silver is extracted as cationic complex.
(c) Nickel is purified by zone refining.
(d) Zr and Ti are purified by van Arkel method.

Q 32.

The mixture of compounds A and B is passed through a column of Al2O3 by using alcohol as eluent. Compound A is eluted in preference to compound B. Which of the compounds A or B is more readily adsorbed on the column?

Q 33.

Assertion (A): Zone refining method is very useful for producing semiconductors.
Reason (R): Semiconductors are of high purity.

Q 34.

ncert-solutions-for-class-12-chemistry-general-principles-and-processes-of-isolation-of-elements-3

Q 35.

I low is cast iron' different from pig iron '?

Q 36.

Which of the following reaction is an example of autoreduction?
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-3
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-4

Q 37.

In the metallurgy of aluminium
(a) Al3+ is oxidized to Al(s)
(b) graphite anode is oxidized to carbon monoxide and carbon dioxide
(c) oxidation state of oxygen changes in the reaction at anode
(d) oxidation state of oxygen changes in the overall reaction involved in the process.

Q 38.

In the extraction of aluminium by Hall-Heroult process, purified A1203 is mixed with CaF2 to
(a) lower the melting point of A1203.
(b) increase the conductivity of molten mixture.
(c) reduce Al+3 into Al(s).
(d) acts as catalyst.

Q 39.

How is copper extracted from low grade copper ores?

Q 40.

What is the role of depressant in froth-floatation process?

Q 41.

State the role of silica in the metallurgy of copper.

Q 42.

Why copper matte is put in silica lined converter?

Q 43.

For the reduction of FeO at the temperature corresponding to point D, which of the following statement is correct?
ncert-exemplar-problems-class-12-chemistry-general-principles-processes-isolation-elements-12

Q 44.

Write down the reactions taking place in blast furnace related to the metallurgy of iron at the temperature range 500-800 K.

Q 45.

Which of the ores mentioned  can be concentrated by magnetic separation method?

Q 46.

Name the common elements present in the anode mud in electrolytic refining of copper. Why are they so present?

Q 47.

Choose the correct option of temperature at which carbon reduces FeO to iron and produces CO.
(a) Below temperature at point A
(b) Approximately at the temperature corresponding to point A
(c) Above temperature at point A but below temperature at point D
(d) Above temperature at point A

Q 48.

Common impurities present in bauxite are .
(a) CuO (b) ZnO (c) Fe2O3   (d)  SiO2

Q 49.

For the metallurgical process of which of the ores, calcined ore can be reduced by carbon?
(a) Haematite (b) Calamine (c) Iron pyrites (d) Sphalerite

Q 50.

At temperatures above 1073 K coke can be used to reduce FeO to Fe. How can you justify this reduction with Ellingham diagram?