what is photochemical smog composed of? how does this affect the plants?
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Photochemical smog is formed when sunlight interacts with certain chemicals in the atmosphere. Ozone is the main component in this type of air pollution. Ozone in the stratosphere protects us against harmful ultraviolet radiation, but on the ground, it is hazardous to human health. Ground-level ozone forms when motor vehicle emissions containing nitrogen oxide and volatile organic compounds (produced from paint and evaporation of fuel and solvents) react in the presence of sunlight.
Health Effects
Photochemical smog is capable of inflicting irreversible damage on the lungs and heart. Even short-term exposure to photochemical smog tends to have ill effects on both the young and the elderly. It causes painful irritation of the respiratory system, reduced lung function and difficulty breathing; this is more evident while exercising or working outdoors. High levels of smog also trigger asthma attacks because the smog causes increased sensitivity to allergens, which are triggers for asthma.
Affected People
People with pre-existing health problems (such as respiratory diseases) are sensitive to ozone. Children, the elderly and people with poor lung function carry a far greater risk of developing respiratory illness from photochemical smog than healthy adults.
Effects on Environment
Photochemical smog has devastating effects on the environment. The collection of chemicals found in photochemical smog causes problems for plants and animal life. Some plants such as tobacco, tomato and spinach are highly responsive to ozone, so photochemical smog can decimate these sensitive crops, trees and other vegetation. Ozone causes necrotic (dead) patterns on the upper surfaces of the leaves of trees. Ground-level ozone also can interfere with the growth and productivity of trees. The effects of smog on animals are also similar to its effect on humans; it decreases lung capacity and lung elasticity.
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Photochemical smog is composed of
•primary and
•secondary pollutants.
The products formed are ozone, PAN, aldehydes and phenols.
Chloroplasts are damaged,
reducing photosynthetic activity
and thus the growth.
Hope it will help you.
& Here is the extra solution too.
•primary and
•secondary pollutants.
The products formed are ozone, PAN, aldehydes and phenols.
Chloroplasts are damaged,
reducing photosynthetic activity
and thus the growth.
Hope it will help you.
& Here is the extra solution too.
Attachments:
reducing photosynthetic activity
and thus the growth.
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