Bundle: Chemistry for Engineering Students, 3rd, Loose-Leaf + OWLv2 with Quick Prep and Student Solutions Manual 24-Months Printed Access Card
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Chapter 4, Problem 4.49PAE

4.47 Silicon carbide is, an abrasive used in the manufacture of grinding wheels. A company is investigating whether they can be more efficient in the construction of such wheels by making their own SiC via the reaction

   SiO 2 +  3 C   SiC  +  2 CO

(a) If this reaction consistently has a yield of 85%, what is the minimum amount of both silicon dioxide and carbon needed to produce 3400 kg of SiC for the manufacture of cutting wheels? (b) The silicon dioxide is to he obtained from sand and the carbon is derived from coal. If the available sand is 95% SiO2 by weight and the coal is 73% C by weight, what mass of coal is needed for each metric ton of sand used?

a.

Expert Solution
Check Mark
Interpretation Introduction

To determine: The minimum amount of both silicon dioxide and carbon needed to produce 3400 kg of SiC for the manufacture of cutting wheels.

Explanation of Solution

Step 1: Balance Reaction

Reaction is already balanced

Step 2: Change all amounts to mol

molSiC=massMolecularWeight=340040.09= 84.809 kmol

Step 3: Relate stoichiometry

Ratio=1:1

1 mol SiO2=1 mol SiCmol SiO2=84.809 kmol

Now, for carbon:

Ratio=1:3

1 molSiO2=3 molCmolC=3×(84.809 kmol) = 254.427kmolC

Step 4: Calculate mass

For SiO2

massSiO2=mol×Molecular Weight SiO2massSiO2=(84.809kmol)×(60.0843 kg/kmol)massSiO2= 5095.689kgSiO2

Now, for carbon

massC=mol×Molecular Weight SiO2massC=(254.427 kmol)×(12.0 kg/kmol)massC=3052.8kgC

Step 5: Correct for actual yield

actualmassSiO2=(5095.689kg SiO2)×( 85% 100%)actualmassSiO2=4330.75 kg

actualmass C=(3052.8 kgC)×( 85 % 100 %)actualmass C=2594.88 kg

b.

Expert Solution
Check Mark
Interpretation Introduction

To determine:

Mass of coal needed for each metric ton of sand used.

Explanation of Solution

Now, relate new amounts.

Step 1: Relate 1 metric ton of sand:

massSand=1ton=1000kgmassSiO2=(1000kg)×( 95 100)massSiO2=950kg

Step 2: Use Ratio between reactants:

Ratio=3×Molecular Weight C1×Molecular Weight SiO2=3×(12)60.08=0.5992massC=(950kg)×(0.5992)=569.24kgC

Step 3:Calculate mass of coal

massCoal=569.24kgC1×100kgCoal73kgCmassCoal=779.78kg

Conclusion

a. massC=2594.88kg ; massSiO2=4330.75 kg

b. massCoal=779.78kgper ton

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Chapter 4 Solutions

Bundle: Chemistry for Engineering Students, 3rd, Loose-Leaf + OWLv2 with Quick Prep and Student Solutions Manual 24-Months Printed Access Card

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