The following redox reaction is highly exothermic and is used to produce molten iron for welding pieces of steel together, e.g - Leaving Cert Chemistry - Question b - 2013
Question b
The following redox reaction is highly exothermic and is used to produce molten iron for welding pieces of steel together, e.g. sections of railway track:
$$8Al + 3... show full transcript
Worked Solution & Example Answer:The following redox reaction is highly exothermic and is used to produce molten iron for welding pieces of steel together, e.g - Leaving Cert Chemistry - Question b - 2013
Step 1
Define oxidation in terms of change in oxidation number.
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Answer
Oxidation is defined as an increase in oxidation number. In a chemical reaction, this typically means that the species is losing electrons.
Step 2
Show using oxidation numbers that this is a redox reaction.
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Answer
In the given reaction:
Aluminum (Al) changes from an oxidation state of 0 in elemental form to +3 in aluminum oxide (Al₂O₃), thus it is oxidized.
Iron (Fe) changes from an oxidation state of +3 in iron(III) oxide (Fe₂O₃) to 0 in elemental iron (Fe), thus it is reduced.
This indicates that there is a transfer of electrons, confirming that this is a redox reaction.
Step 3
Identify the reducing agent.
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The reducing agent in this reaction is aluminum (Al) because it donates electrons and is oxidized in the process.
Step 4
What mass of aluminium powder is required to produce 1008 g of molten iron for a single railway track weld?
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To calculate the mass of aluminum required to produce 1008 g of iron:
From the balanced equation, 8 mol of Al produces 9 mol of Fe.
Calculate the molar mass of Fe:
Molar mass of Fe = 56 g/mol
9 mol Fe = 9 × 56 g = 504 g.
If 8 mol of Al yields 504 g of Fe, the amount of Al needed for 1008 g of Fe:
\text{Mass of Al} = \left( #\frac{8 \text{ mol Al}}{9 \text{ mol Fe}} \right) \times \frac{1008 \text{ g Fe}}{56 \text{ g/mol}}=(98)×18 mol Al=16 mol Al
Molar mass of Al is 27 g/mol, therefore:
Mass of Al=16 mol×27 g/mol=432extg
Step 5
What mass of aluminium oxide is produced as waste in the process?
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Answer
To find the mass of aluminum oxide (Al₂O₃) produced:
From the balanced equation, 8 mol of Al produces 4 mol of Al₂O₃.
Since 16 mol of Al is used, the moles of Al₂O₃ produced:
Moles of Al2O3=(8 mol Al4 mol Al2O3)×16 mol Al=8 mol Al2O3
The molar mass of Al₂O₃:
Molar mass = (2 × 27 g/mol) + (3 × 16 g/mol) = 54 g + 48 g = 102 g/mol.
Mass of Al₂O₃ produced:
Mass of Al2O3=8 mol×102 g/mol=816extg
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