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Application of Electrolytic Cells Lesson 11
24

application electrolytic cells

Jul 02, 2015

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Moon Bulan
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Page 1: application electrolytic cells

Application ofElectrolytic Cells

Lesson 11

Page 2: application electrolytic cells
Page 3: application electrolytic cells

Electrolysis describes what happens in an electrolytic cell andmeans to use electricity to make chemicals.

Many elements are made by electrolysis

Pb Al Zn Na K Li H2 Cl2 F2

I2 O2

Pb2+ + 2e- → Pb(s)

2Cl- → Cl2(g) + 2e-

This is sometimes called electrowinning- the element is won from its ion

Page 4: application electrolytic cells

Making Aluminum by ElectrolysisAlcan (70,000 employees in 55 countries) Kitimat B.C. 2.7 MT 7 % world production

Page 5: application electrolytic cells

Aluminum

Page 6: application electrolytic cells

Aluminum Production by Electrolysis

Name of the Ore imported from (Guinea and Brazil)Bauxite Al2O3

.3H2O

Heating drives off the waterAl2O3

.3H2O + Heat → Al2O3 + 3H2O

Melting point of Bauxite is 2045 0C

This is too hot!Cryolite is added Lowers the melting point to 1000 0C

Page 7: application electrolytic cells

Reduction of water

You cannot reduce Aluminum in water!It must be molten!

Page 8: application electrolytic cells

CC

DC Power

- +

Al3+

O2-

-

Reduction

Cathode

Al3+ + 3e- → Al(s)

+

Oxidation

Anode

O2- → 1/2O2(g) + 2e-

Liquid Al floats to the top and is removed

Oxygen gas

Al2O3(l)

Cation Cathode Reduction Anion Anode Oxidation

Page 9: application electrolytic cells

Au+

CN-

Au+

CN-

Electroplating

Au plating a Cu pennyElectroplating is the process of reducing a metal on to the surface of anotherElectrolyte: Must contain the ion of the metal that platesCathode: The metal to be covered with a new metalAnode: Metal to be plated on top the other metal

DC Power- +

DC Power- +

Au

+OxidationAnodeAu(s) → Au+ + 1e-

e--ReductionCathodeAu+ + e- → Au(s)

CuCu

Page 10: application electrolytic cells

AuCN

-ve+ve

stainless steel or Au

Page 11: application electrolytic cells
Page 12: application electrolytic cells
Page 13: application electrolytic cells

Au plated

Page 14: application electrolytic cells

Copper Ring Gold Plated

Page 15: application electrolytic cells

Tanya’s Ring Gold Plated

Page 16: application electrolytic cells

Ag+

NO3-

Electroplating

Ag plating a Loonie

DC Power- +

DC Power- +

Ag

+OxidationAnodeAg(s) → Ag+ + 1e-

e--ReductionCathodeAg+ + e- → Ag(s)

$1

Page 17: application electrolytic cells

Electrorefinning Lead Trail, B.C.Teck 16 mines in BCMajor World Producer of Zn, Cu, Pb, and Coal

Page 18: application electrolytic cells

Lead Refinery-Trail

Page 19: application electrolytic cells

The Electrorefinning of Lead

Electrorefining is the process of purifying a metal by electrolysis.The electrolyte must contain PbImpure metal is oxidized at the anode and pure metal is reduced at the cathode.This is the same as electroplating.

DC Power- +

DC Power- +

Pb2+

NO3-

-ReductionCathode

Pb2+ + 2e- → Pb(s)

Cathode: Pure Pb

Anode: Impure Pb

Page 20: application electrolytic cells

The impurities in Pb are:AuAgZn

Page 21: application electrolytic cells

Zn oxidizes

Ag does not oxidize

Pb oxidizes

Au does not oxidizeAt the Anode

The voltage is controlled so that:

Page 22: application electrolytic cells

Pb2+ reduces

At the Cathode

Zn2+ does not reduce

The voltage is controlled so that:

Page 23: application electrolytic cells

The Electrorefinning of Lead Electrorefining is the process of purifying a metal by electrolysis.The electrolyte must contain PbImpure metal is oxidized at the anode and pure metal is reduced at the cathode.This is the same as electroplating.

DC Power- +

DC Power- +

Pb2+

NO3-

-ReductionCathode

Pb2+ + 2e- → Pb(s)

Cathode: Pure Pb Anode: Impure Pb

+OxidationAnodeZn(s) → Zn2+ + 2e-

Pb(s) → Pb2+ + 2e-

Zn2+

Au Ag

Solid Au and Cu are released from the anode and fall to the bottom

Page 24: application electrolytic cells

Video of the thermite reaction used to make Iron

The Thermite reaction is very exothermic and produces white hot molten iron.

Fe2O3 + 2Al(s) → Al2O3(s) + 2Fe(l) + energy