How does an air freshener interact with a molecule that causes odor, like pyridine, a combustion by- product left behind by cigarette/cigar smoke? Explain and draw & upload a picture below. Your explanation should discuss how these molecules interact (what IMFs) and what drives this interaction.
How does an air freshener interact with a molecule that causes odor, like pyridine, a combustion by- product left behind by cigarette/cigar smoke? Explain and draw & upload a picture below. Your explanation should discuss how these molecules interact (what IMFs) and what drives this interaction.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question
![How does an air freshener interact with a molecule
that causes odor, like pyridine, a combustion by-
product left behind by cigarette/cigar smoke?
Explain and draw & upload a picture below. Your
explanation should discuss how these molecules
interact (what IMFs) and what drives this
interaction.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fffafce8e-7d6a-4277-9553-93fbf2dd29e8%2Fe150c221-b0fe-48c4-927d-0a9dd8c74780%2Fxdjr0r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:How does an air freshener interact with a molecule
that causes odor, like pyridine, a combustion by-
product left behind by cigarette/cigar smoke?
Explain and draw & upload a picture below. Your
explanation should discuss how these molecules
interact (what IMFs) and what drives this
interaction.
![HOW AIR FRESHENERS WORK
Some air fresheners just mask bad smells, while others claim to eliminate odors completely. Here.
we review the different types of compounds found in air fresheners and how they combat stench.
FRAGRANCES
ODOR TRAPPING
Air freshener aroma compounds mask bad
smells. They include terpenes such as limonene
and a-pinene. Some people have expressed
concern that these can react with ozone to
produce formaldehyde, a carcinogen.
ODOR NEUTRALIZING
Some air fresheners use organic acids, which
can react with smelly compounds to break
them down to more benign molecules.
CITRIC
ACID
MALEIC
ACID
LIMONENE
E
a-PINENE
HO
но.
PERIODIC
GRAPHICS
OH
OH
OH
OH
air
freshener
Cyclodextrins are ring-shaped molecules
made from cornstarch. Odor molecules get
caged within cyclodextrin's cavity, stopping
them from reaching your nose.
HO
HO
O HO
LOH
OH
OH
OH
ODOR
MOLECULES
OH HO
OH
OH
OH O
HO
HO
HO_
B-CYCLODEXTRIN
HO
OH
HYDROPHOBIC
HYDROPHILIC
EXTERIOR
Hydrophobic odor molecules get trapped in
cyclodextrin's hydrophobic center.
C&EN 2018 Created by Andy Brunning for Chemical & Engineering News](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fffafce8e-7d6a-4277-9553-93fbf2dd29e8%2Fe150c221-b0fe-48c4-927d-0a9dd8c74780%2Fj9ciuq8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:HOW AIR FRESHENERS WORK
Some air fresheners just mask bad smells, while others claim to eliminate odors completely. Here.
we review the different types of compounds found in air fresheners and how they combat stench.
FRAGRANCES
ODOR TRAPPING
Air freshener aroma compounds mask bad
smells. They include terpenes such as limonene
and a-pinene. Some people have expressed
concern that these can react with ozone to
produce formaldehyde, a carcinogen.
ODOR NEUTRALIZING
Some air fresheners use organic acids, which
can react with smelly compounds to break
them down to more benign molecules.
CITRIC
ACID
MALEIC
ACID
LIMONENE
E
a-PINENE
HO
но.
PERIODIC
GRAPHICS
OH
OH
OH
OH
air
freshener
Cyclodextrins are ring-shaped molecules
made from cornstarch. Odor molecules get
caged within cyclodextrin's cavity, stopping
them from reaching your nose.
HO
HO
O HO
LOH
OH
OH
OH
ODOR
MOLECULES
OH HO
OH
OH
OH O
HO
HO
HO_
B-CYCLODEXTRIN
HO
OH
HYDROPHOBIC
HYDROPHILIC
EXTERIOR
Hydrophobic odor molecules get trapped in
cyclodextrin's hydrophobic center.
C&EN 2018 Created by Andy Brunning for Chemical & Engineering News
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