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PRESENTED BY,
V.SAKTHIKUMAR
S.MOHANRAJ
II YEAR PRODUCTION ENGG
(ATONOMOUS INSTUTION)
SALEM-5
CONTENT
 Introduction
 Explanation
 Sources
1.Nuclear power plant
2.Coal fired power plant
3.Hydro electric power plant
4.Thermal shock
5.Industrial effluent
6.Domestic sewage
7.Deforestation
8.Soil erosion
 Effects
 Biotic effects
 Thermal pollution in streams
by human activities
 Control measures
 Conclusion
• Thermal pollution is the degradation of water
quality by any process that changes ambient water
temperature.
• It is the harmful increase in water temperature in
streams, rivers, lakes, or occasionally, coastal ocean
waters.
• A temperature increase as small as 1 or 2 Celsius
degrees (about 2 to 4 Fahrenheit degrees) can kill
native fish, shellfish, and plants and species, often
with undesirable effects.
The major sources of thermal pollution are discharge of
heated water or hot waste material into water bodies from
 Nuclear power plant
 Coal fired power plants
 Hydro electric power plant
 Thermal shock
 Industrial effluents
 Domestic sewage
 Deforestation
 Soil erosion
 Nuclear power plants use
water as a cooling agent.
 After the water is used, it
is put back into a water supply
at 9-20oC warmer .
 Emission from nuclear
reactors increase the
temperature of water bodies.
 Coal is utilized as a fuel.
 Condenser coils are cooled
with water from nearby lake or
river.
 The heated effluents
decrease the DO of water.
 Damages the marine
organisms.
 Generation of hydro
electric power sometimes
results in negative thermal
loading in water systems.
 Creates less heat on
water sources less than
nuclear power plant.
 When a power plant first
opens or shuts down for
repair or other causes, fish
and other organisms
adapted to particular
temperature range can be
killed by the abrupt change
in water temperature
known as "thermal shock."
 Discharged water from
steam-electric power industry
using turbo generators will
have a higher temperature
ranging from 6 to 9˚C than
the receiving water.
 In modern stations,
producing 100 MW, nearly one
million gallons are discharged
in an hour with increase in
temperature of the cooling
water passing by 8 to 10 ˚C .
 Sewage is commonly
discharged into lakes, canals
or streams.
 Municipal sewage normally
has a higher temperature
than the receiving water.
 Increase in temperature of
the receiving water decreases
the dissolved oxygen of water.
 The foul smelling gases
increased in water resulting in
death of marine organisms.
 Streams and small lakes
are naturally kept cool by
trees and other tall plants
that block sunlight. People
often remove this shading
vegetation in order to
harvest the wood in the
trees, to make room for
crops, or to construct
buildings, roads, and other
structures.
 Removal of vegetation
far away from a stream or
lake can contribute to
thermal pollution by
speeding up the erosion of
soil into the water, making it
muddy, which increases the
light absorbed .
 Reduction in dissolved oxygen: Concentration of
Dissolved Oxygen (DO) decreases with increase in
temperature.
 Interference in reproduction: In fishes, several
activities like nest building, spawning, hatching,
migration and reproduction depend on optimum
temperature.
 Direct mortality: Thermal pollution is directly
responsible for mortality of aquatic organisms.
 Increase in toxicity: The rising temperature
increases the toxicity of the poison present in water.
Thermal pollution in streams by
human activities
 Industries and power plants use water to cool machinery
and discharge the warm water into a stream.
 Stream temperature rises when trees and tall vegetation
providing shade are cut.
 Soil erosion caused due to construction also leads to
thermal pollution
 Removal of stream side vegetation
 Poor farming Practices also lead to thermal pollution
 Energy chips
 Desalination plants
 Less nuclear power
 End shoreline deforestation
 Prevent soil erosion
CONCLUSION
 Ensure to use 100% renewable sources
 This pollution negatively affect the yield and
quality of crops
 The plant can be considered at most
important modes to use solar thermal and
biomass power in future….
thermal pollution

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thermal pollution

  • 1. PRESENTED BY, V.SAKTHIKUMAR S.MOHANRAJ II YEAR PRODUCTION ENGG (ATONOMOUS INSTUTION) SALEM-5
  • 2. CONTENT  Introduction  Explanation  Sources 1.Nuclear power plant 2.Coal fired power plant 3.Hydro electric power plant 4.Thermal shock 5.Industrial effluent 6.Domestic sewage 7.Deforestation 8.Soil erosion  Effects  Biotic effects  Thermal pollution in streams by human activities  Control measures  Conclusion
  • 3. • Thermal pollution is the degradation of water quality by any process that changes ambient water temperature. • It is the harmful increase in water temperature in streams, rivers, lakes, or occasionally, coastal ocean waters. • A temperature increase as small as 1 or 2 Celsius degrees (about 2 to 4 Fahrenheit degrees) can kill native fish, shellfish, and plants and species, often with undesirable effects.
  • 4.
  • 5. The major sources of thermal pollution are discharge of heated water or hot waste material into water bodies from  Nuclear power plant  Coal fired power plants  Hydro electric power plant  Thermal shock  Industrial effluents  Domestic sewage  Deforestation  Soil erosion
  • 6.  Nuclear power plants use water as a cooling agent.  After the water is used, it is put back into a water supply at 9-20oC warmer .  Emission from nuclear reactors increase the temperature of water bodies.
  • 7.  Coal is utilized as a fuel.  Condenser coils are cooled with water from nearby lake or river.  The heated effluents decrease the DO of water.  Damages the marine organisms.
  • 8.  Generation of hydro electric power sometimes results in negative thermal loading in water systems.  Creates less heat on water sources less than nuclear power plant.
  • 9.  When a power plant first opens or shuts down for repair or other causes, fish and other organisms adapted to particular temperature range can be killed by the abrupt change in water temperature known as "thermal shock."
  • 10.  Discharged water from steam-electric power industry using turbo generators will have a higher temperature ranging from 6 to 9˚C than the receiving water.  In modern stations, producing 100 MW, nearly one million gallons are discharged in an hour with increase in temperature of the cooling water passing by 8 to 10 ˚C .
  • 11.  Sewage is commonly discharged into lakes, canals or streams.  Municipal sewage normally has a higher temperature than the receiving water.  Increase in temperature of the receiving water decreases the dissolved oxygen of water.  The foul smelling gases increased in water resulting in death of marine organisms.
  • 12.  Streams and small lakes are naturally kept cool by trees and other tall plants that block sunlight. People often remove this shading vegetation in order to harvest the wood in the trees, to make room for crops, or to construct buildings, roads, and other structures.
  • 13.  Removal of vegetation far away from a stream or lake can contribute to thermal pollution by speeding up the erosion of soil into the water, making it muddy, which increases the light absorbed .
  • 14.  Reduction in dissolved oxygen: Concentration of Dissolved Oxygen (DO) decreases with increase in temperature.  Interference in reproduction: In fishes, several activities like nest building, spawning, hatching, migration and reproduction depend on optimum temperature.  Direct mortality: Thermal pollution is directly responsible for mortality of aquatic organisms.  Increase in toxicity: The rising temperature increases the toxicity of the poison present in water.
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  • 16. Thermal pollution in streams by human activities  Industries and power plants use water to cool machinery and discharge the warm water into a stream.  Stream temperature rises when trees and tall vegetation providing shade are cut.  Soil erosion caused due to construction also leads to thermal pollution  Removal of stream side vegetation  Poor farming Practices also lead to thermal pollution
  • 17.  Energy chips  Desalination plants  Less nuclear power  End shoreline deforestation  Prevent soil erosion
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  • 19. CONCLUSION  Ensure to use 100% renewable sources  This pollution negatively affect the yield and quality of crops  The plant can be considered at most important modes to use solar thermal and biomass power in future….