The balanced equation is ##3FeS+5O_2####rarr####Fe_3O_4+3SO_2##.
The theoretical yield of ##Fe_3O_4## is 880 g. (Rounded to two due to 1.0 kg.)
A) BALANCED EQUATION
In order to write a balanced chemical equation for this reaction we must determine the formulas for iron sulfide and iron oxide as they have more than one formula because iron forms more than one ion.
Determine the formulas for iron sulfide and iron oxide.
Iron Sulfide
S=36.5%
Fe=63.5%
Because 36.5% is 35/100 we can assume a 100-g sample of iron sulfide and we can say that there are 36.5 g S and 63.5 g Fe. We can convert the masses to moles by dividing the mass of each element by its molar mass (atomic mass on in grams.
Sulfur
##(36.5 g S)/((32.065 g S)/(1 mol S))=((36.5 cancelg S)xx(1 mol S)/(32.065 cancelg S))=1.138 mol S##
Iron
##(63.5 g Fe)/((55.845 g Fe)/(1 mol S))=((63.5 cancelg Fe)xx(1 mol Fe)/(55.845 cancelg Fe))=1.137 mol Fe##
for ##Fe## and ##S##
##(1.138 cancelmol)/(1.137 cancelmol)=1.000##
Iron and sulfur are present in a 1:1 ratio.
The formula for iron sulfide is ##FeS##.
Iron Oxide
Again because 27.6% is 27.6/100 we assume a 100-g sample of iron oxide and we can say that there are 27.6 g oxygen and 72.4 g Fe. Again we can convert the masses to moles by dividing the mass of each element by its molar mass (atomic mass on the periodic table in grams.
Oxygen
##(27.6 g O)/((15.999 g O)/(1 mol O))=((27.6 g O)xx(1mol O)/(15.999 g O))=1.725 mol O##
Iron
##(72.4 g Fe)/((55.845 g Fe)/(1mol Fe))=((72.4 cancelg Fe)xx(1mol Fe)/(55.845 cancelg Fe))=1.296 mol O##
Mole ratios for O and Fe
Divide the moles of each element by the smallest number of moles.
##O:####=####(1.725mol)/(1.296mol)=1.331##
##Fe:####=####(1.296mol)/(1.296mol)=1.000##
Mole ratios must be in whole numbers so multiply both ratios times ##3##.
##O:####=####(1.725mol)/(1.296mol)=1.331xx3=3.993~~4##
##Fe:####=####(1.296mol)/(1.296mol)=1.000xx3=3##
ratio for ##Fe:O####=####3:4##
The chemical formula for iron oxide is ##Fe_3O_4##.
Balanced Chemical Equation
##3FeS+5O_2####rarr####3SO_2+Fe_3O_4##
B) THEORETICAL YIELD OF IRON OXIDE
We need the molar masses of ##FeS## and ##Fe_3O_4## and the mole ratio from the balanced equation.
Molar mass of ##FeS=(1xx55.845 g/mol)+(1xx32.065 g/mol)=87.910 g/mol##
Molar mass of ##Fe_3O_4=(3xx55.945 g/mol)+(4xx15.999
g/mol)=231.531 g/mol##
Mole ratio of iron oxide and iron sulfide is:
##(1 mol Fe_3O_4)/(3 mol FeS)##
Calculate Theoretical Yield of Iron Oxide
Convert 1 kg FeS to 1000 g FeS. Then convert the mass of FeS to moles using its molar mass. Multiply moles FeS times the mole ratio between iron oxide and iron sulfide to get moles iron oxide. Multiply moles of iron oxide times its molar mass.
##1000 cancelg FeSxx(1cancelmol FeS)/(87.91 cancelg FeS)xx(1cancelmol Fe_3O_4)/(3cancelmol FeS)xx(231.531 g Fe_3O_4)/(1cancelmol Fe_3O4)=880 g Fe_3O_4##
(answer rounded to two significant figures because of 1.0 kg)