Unit 7: (7.2) Photochemical Smog

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10 Terms

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photochemical oxidants

a class of air pollutants formed as a result of sunlight acting on compounds such as nitrogen oxides

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Role of sunlight in smog formation

Breaks an oxygen atom off of NO2, driving the formation of ozone (O3)

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Environmental factors affecting smog formation

Surrounding mountains can block air flow from dispersing smog. Geographical basins are also susceptible to smog formation that isn't dispersed by wind.

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Nitrogen oxide

(NOx) Major source is auto exhaust. Primary and secondary effects include acidification of lakes, respiratory irritation, leads to smog and ozone. Reduced using catalytic converters in cars

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VOCs (volatile organic compounds)

group of primary pollutants that are carbon-based and easily evaporate at room temperature. gasoline, formaldehyde, dry-cleaning fluids, naturally from coniferous trees ; component of photochemical smog

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Formaldehyde and gasoline

Potent VOCs that are present in high concentrations in urban areas. Especially volatile during warmer summer months as heat drives faster evaporation

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Natural VOCs sources

Coniferous (pine) trees

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Respiratory irritation

Damage, irritation, inflammation in the respiratory pathways like the trachea, bronchioles, and aveoli (air sacs in the lungs). Caused by SOx, PM, Ozone, Smog

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Eye irritation

Redness and itching in the eyes from PM, SOx, Ozone, Smog

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Photochemical smog reduction

Any methods that reduce vehicle emissions like carpooling, electric cars, buses, biking/walking. Increased vehicle efficiency.

Methods that target sources of VOCs also help reduce smog. Less car use, less gasoline evaporation from gas stations. Fewer industrial petrochemical plants, dry-cleaning laundromats, etc.