Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 21, Problem 79AP
Interpretation Introduction

Interpretation:

The equations for the given processes are to be represented, and the reasonfor greenhouse gas between N2O and CO2, that is, more effective is to be explained, and the maximum number of moles of ozone that is destroyedper year as per the given conditionsis to be calculated.

Concept introduction:

Greenhouse effect is a process in which heat is trapped by the atmospheric gases near the surface of the earth.

Stratosphere is the second lowest layer of the Earth’s atmosphere and mainly contains ozone, nitrogen and oxygen.

The number of moles in the reaction is represented by the expression as:

Moles=Given massMolar mass

Expert Solution & Answer
Check Mark

Answer to Problem 79AP

Solution:

(a)

The reaction between the N2O and the oxygen atoms is as follows:

             N2+ O  2NO             2NO +2O3 2NO2+2O2_Overall: N2+ O + 2O32NO2+2O2

(b)

N2O is a more effective greenhouse gas than CO2.

(c)

3.0×1010 mol.

Explanation of Solution

a) Equations of that representing the reaction between N2O and oxygen atoms to produce NO, which is further oxidized by O3 to form NO2.

The reaction between the N2O and the oxygen atoms and then between NO and O3 is as follows:

             N2+ O  2NO             2NO +2O3 2NO2+2O2_Overall: N2+ O + 2O32NO2+2O2

b) N2O is a more effective greenhouse gas than carbon dioxide to be explained.

N2O is a more effective greenhouse gas than carbon dioxide. In carbon dioxide, the dipole moment is equal and opposite so, they cancel each other. Hence, the net dipole for carbon dioxide is zero, whereas N2O is linear and has more dipole moment than CO2. Therefore, N2O is a more effective greenhouse gas.

c) The maximum number of moles of O3 that can be destroyed as a result of the given process per year.

Amount of adipic acid used every year is 2.2×109 kg.

1 mole of adipic acid gives 1 mole of N2O.

The number of moles of adipic acid is calculated as follows:

Moles=given massMolar mass

Substitute the values in the above equation:

Moles=(2.2×109 kg adipic acid)(1000 g1 kg)(1 mol adipic acid146.1 g adipic acid)Moles=1.5×1010 mol adipic acid

Thus, the moles of adipic acid is 1.5×1010 mol.

As given, 1 mole of adipic acid gives 1 mole of N2O produced. Thus,

1.5×1010 mol adipic acid=1.5×1010 mol N2O

The overall balanced equation is as follows:

N2+ O + 2O32NO2+2O2

From this reaction, one mole of N2O will react with 2 moles of O3. Therefore, the number of moles of O3 are as follows:

1.5×1010 mol adipic acid=1.5×1010 mol N2=2(1.5×1010 mol O3)1.5×1010 mol adipic acid=1.5×1010 mol N2=3.0×1010 mol O3  

Thus, the number of moles of O3 is 3.0×1010 mol.

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Chapter 21 Solutions

Chemistry

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