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Smog
• Smoke and fog
• London Smog / Industrial smog / reducing
smog
• Caused by the combustion of sulfur
containing coal
• Water droplets, SO2, SO3, soot, fly ash
and sulfuric acid
Reducing Smog
• Chicago, Beijing
• Cold, wet winters
• Thermal inversion traps cold air close to
earth surface
• Decline in reducing smog
• Use of SNG, alkaline scrubber
London Smog
London Smog : SO2
• water droplets in the air condenses on
smoke particles produced by the burning
of coal, forming tiny smog droplets.
-sulfur dioxide
-Sulfur dioxide is a gas that attacks the
lungs and makes breathing difficult
SO2 smog
Photochemical smog
Oxidizing smog
• Photochemical smog
Photochemical smog
Photochemical smog
• clear, sunny skies
• warm temperatures
• stable air conditions under a stationary
high pressure system
• onshore sea-breeze
Pollutant level during the Day
Thermal Inversion
E10 Thermal Inversion
Effects on Air Quality
Thermal Inversion
• Gradual decrease in temperature as the
altitude increases
• Warmer, denser air near the earth surface
• Pollutants produced near the surface of
the earth move with warm air to the upper
atmosphere
• Cooler air takes the place of rising warm
air near the earth surface
Thermal Inversion
• Air currents allow the pollutants to be
dispersed
• Abnormal temperature arrangement of air
masses where a layer of warmer air is
trapped between the two layers of cold air
• Wind gives horizontal movement of air
• Mountains hinders the dispersion
• Flow of cold air creates cool layer
Thermal Inversion
• No wind, cold temperatures,, mountains
• Warmer air acts as lid
Thermal Inversion
Normal Condition
•
Thermal Inversion
a
lt
it
u
d
e
Cooler air
Cold clean air
Warmer air
Polluted cold
air
Warmer air
temperature
Smog
• Photochemical
Hydroxide radical
• Photochemical Smog
In summary, this is what happens in
photochemical smog formation
•
1) Nitrogen oxides generate oxygen atoms
•
2) Oxygen atoms form hydroxyl radicals
•
3) Hydroxyl radicals generate hydrocarbon radicals
•
4) Hydrocarbon radicals form hydrocarbon peroxides
•
5) Hydrocarbon peroxides form aldehydes
•
6) Aldehydes form aldehyde peroxides
•
7) Aldehyde peroxides form peroxyacylnitrates
O3
Ethanol