Chemistry: Principles and Practice
Chemistry: Principles and Practice
3rd Edition
ISBN: 9780534420123
Author: Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher: Cengage Learning
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Chapter 21, Problem 21.59QE

(a)

Interpretation Introduction

Interpretation:

Amount of coal that is required to produce the energy as same as fission of 1kg uranium has to be calculated in metric tons.

(a)

Expert Solution
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Explanation of Solution

Given information:

Amount of energy produced from one kilogram of coal is 2.8×104kJ.  Amount of energy produced by fission of 1mol of 235U is 1.9×1010kJ.

Molar mass of 235U is 235.05g/mol.  Therefore, mass of one mole of 235U is 235.05g.

Energy released by one mole of 235U is 1.9×1010kJ.  This is equal to energy released by 0.23505kg of 235U.

Amount of energy released by one kilogram of uranium-235 is calculated as shown below.

    Energyreleased=1.9×1010kJ0.23505kg×1kg=8.083×1010kJ=8.1×1010kJ

Therefore, one kilogram of uranium-235 releases 8.1×1010kJ of energy.

One kilogram of high-grade coal produces 2.8×104kJ of energy.  Mass of coal required to produce 8.1×1010kJ of energy can be calculated as shown below.

    Massofcoal=8.1×1010kJ×1kg2.8×104kJ=2.892×106kg=2.9×106kg

Conversion of kilogram into metric ton can be done using the conversion factor as shown below.

    2.9×106kg=2.9×106kg×1metricton1000kg=2.9×103metricton

Therefore, the amount of coal required to produce the same amount of energy as of one kilogram of uranium-235 is 2.9×103metricton.

(b)

Interpretation Introduction

Interpretation:

Metric tons of sulfur dioxide that is produced by burning 2.9×103metricton of coal has to be calculed.

(b)

Expert Solution
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Explanation of Solution

In the problem statement it is given that coal contains 0.90% mass sulfur.  This means 0.9g of sulfur is present in 100g of coal.  Total grams of sulfur present in 2.9×103metricton of coal is calculated as shown below.

    MassofSulfur=2.9×103metricton coal×0.9gS100gcoal=2.9×109g coal×0.9gS100gcoal=2.61×107gS

Reaction between sulfur and oxygen to produce sulfur dioxide can be given as shown.

    S+O2SO2

From the equation, it is found that one mole of sulfur reacts with one mole of oxygen to form one mole of sulfur dioxide.  Molar mass of sulfur is 32.1g and that of SO2 is 64.1g.  This means 32.1g of sulfur burns in oxygen to produce 64.1g of sulfur dioxide.  Therefore, the amount of sulfur dioxide produced by burning 2.61×107g of sulfur can be calculated as shown below.

    2.61×107g1molS32.1gS×1molSO21molS×64.1gSO21molSO2=167.301×10732.1gSO2=5.2×107gSO2

Conversion of gram into metric ton can be done using the conversion factor as shown below.

    5.2×107gSO2=5.2×107g×1metricton1000000g=5.2×101metricton=52 metricton

Therefore, the amount of sulfur dioxide produced is 52 metrictons.

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Chapter 21 Solutions

Chemistry: Principles and Practice

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