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Metals. Metallurgy the extraction of metals from ores by reduction (less reactive metals) by electrolysis of melt (reactive metals) the preparation.

Dec 14, 2015

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Page 1: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Metals

Page 2: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Metallurgy

• the extraction of metals from oresby reduction (less reactive metals)by electrolysis of melt (reactive metals)

• the preparation of metals for use

• the study of the relationship between structures and properties of metals

Page 3: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Metal extraction

• Pre-treatment of Ore

• Concentration

• Roasting

Page 4: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Pre-treatment of ore

• crude ore is crushed

Page 5: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Concentration

• floatation

Page 6: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Roasting

• converting sulphide ore to oxide

2ZnS(s) + 3O2(g) -----> 2ZnO(s) + 2SO2(g)

2CuS(s) + 3O2(g) -----> 2CuO(s) + 2SO2(g)

3FeS2(s) + 8O2(g) -----> Fe3O4(s) + 6SO2(g)

Page 7: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Manufacture of Iron and Steel

• Chemistry of blast furnace

• Chemistry of basic oxygen furnace

Page 8: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

iron reduction

raw materials

Page 9: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Several Blast Furnaces

Page 10: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Liquid Iron Pour

Page 11: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Iron(l) & Slag(l) Pours

Page 12: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.
Page 13: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.
Page 14: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

raw materials:

iron ore – several kinds

limestone – calcium carbonate

coke – heated coal

air – to provide the blast

Page 15: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace – raw materials

iron ore => source of iron

Could be any of the following:

Fe2O3, Fe3O4, FeO,

Ore names: haematite, magnetite, ferrite

Sand impurity - SiO2

Page 16: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace – raw materials

Limestone (calcium carbonate) is used to remove impurities – it reacts with the sand which is usually found mixed with the iron ore. In the heat of the furnace it decomposes to calcium oxide (lime) and this then reacts with the silicon dioxide to produce calcium silicate (slag)

CaCO3 CaO + CO2

CaO + SiO2 CaSiO3

Page 17: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

coke => reducing agent

C

Page 18: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

C(s) + O2(g) -----> CO2(g)

coke air

Page 19: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

CO2 + C ---> 2 CO

coke

Page 20: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

3 Fe2O3(s) + CO(g) -----> 2Fe3O4(s) + CO2(g)

iron ore

Page 21: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

Fe3O4(s) + CO(g) -----> 3FeO(s) + CO2(g)

iron ore

Page 22: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

FeO(s) + CO(g) -----> Fe(l) + CO2(g)

iron ore pig iron

Page 23: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

CaCO3(s) + heat -----> CaO(s) + CO2(g)

limestone lime

Page 24: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of blast furnace

CaO(s) + SiO2(s) -----> CaSiO3(l)

lime sand slag

Page 25: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Purification of Metals

• Electrolysis

• Chemical Reactions

Page 26: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Production of Copper

Cu2S(l) + O2(g) -----> 2 Cu(l) + SO2(g)

Cu(s) -----> Cu(s)

impure electrolysis pure

Page 27: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of Basic Oxygen Furnace

iron purification

steel making

raw materials

Page 28: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of Basic Oxygen Furnace

raw materials

pig iron from blast furnace

fluxing agent to remove impurities

alloying agents

Page 29: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.
Page 30: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Chemistry of Basic Oxygen Furnace

Removal of excess of carbon

C(s) + O2(g) -----> CO2(g)

impurity air

in pig iron

Page 31: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.
Page 32: Metals. Metallurgy the extraction of metals from ores  by reduction (less reactive metals)  by electrolysis of melt (reactive metals) the preparation.

Magnetism

• 2 main types– diamagnetism => all electrons are paired– paramagnetism => one or more unpaired

electron, parallel spins on electrons