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What is the Need of Alternate
Sources of Energy?
The social, economic and scientific development
of a country are directly linked to its energy
resources. The conventional sources of
energy that are being used for a long time, are
generally non renewable. They include coal,
petroleum, natural gas and electricity. We are
using them so extensively that their reserves
are depleting at a fast rate. At the same time, it
is becoming increasingly difficult to discover
new deposits. Keeping this in mind, there are
attempts all over the world to tap alternative
sources of energy.
This Include energy from sun, wind, tides,
geothermal sources, biomass and even from
wastes. These forms of energy are abundant,
renewable, pollution free and ecofriendly. They
can also be conveniently made available in
urban, rural and even remote areas. Use of non-
conventional forms of energy can serve two
purposes.
 Supply of energy in a decentralized system.
 Sustaining a cleaner environment
Solar energy
Sun provides us enormous amount of energy in the form of solar
radiation. It reaches the Earth from a distance of about 150
million kilometers, in the form of small wave packets called
photons. It is the result of continuous thermonuclear fusion
taking place in the sun.
1. Conversion of solar energy into heat energy
Solar energy falling on the surface of the earth can be converted
into thermal energy. The heat generated can be stored in Solar
collectors. It can be utilized for various purposes such as
heating of water and cooking of food.
2.Conversion of solar energy into electrical energy
It uses the principle of photo voltaic effect. Such a device is called
solar cell. You have seen such solar cells being used in the
traffic signals in cities, lighting lamps and pumping water and for
other purposes in rural areas.
SOLAR POND
 Solar Pond is one of the most promising technology in
harnessing solar energy. It is a large scale solar collector
with an integrated arrangement for storage of heating energy.
Working : You know that water and air become lighter and rise
above, when heated. When water is heated by solar
radiation, hot water form the bottom of the pond rises and
reaches the surface. It loses the heat gained, to the
atmosphere. The result is that pond water remains at a
temperature nearer to that of the atmosphere. This loss of
heat is prevented by dissolving salts in the bottom of the
pond. It makes water denser and hence, it cannot rise to the
surface. Thus solar energy remains trapped in the pond.
Bio energy
Includes those processes where biological matter
such as plants and plant products provide the basis
for energy and its conversion. Plant, organic
matter, also called vegetable biomass, offers clean
fuel for energy.
Bio alternative to diesel
The oil extracted from the seeds of the plant,
Jatropha is now being used as a bio alternative to
diesel. It requires the conversion of crude oil from
the seeds to a commercially usefull fuel. This
process is called trans estrerification.
 Wind energy is the kinetic energy associated
with the movement of large masses of air,
resulting from the differential heating of
atmosphere by the sun.
 Wind turbines are used
for the purposes of
obtaining wind energy.
Wave energy
 Movement of large quantities of water up
and down in the seas and oceans, in the
form of waves is also a source of
energy.
 However, the cost of energy conversion
per unit, is very high, since it requires
many special equipments to be created
near the sea. Wave energy is however
more reliable than wind energy since the
fluctuations are comparatively less
pronounced.
 It refers to heat of the Earth within 10km.
from the surface. Geothermal energy has a
temperature of about 13000C.
 There are about 340 hot springs identified in
different parts of our country. Of these, only
a few have been used.
Energy from wastes
 A huge quantity of waste is generated in our towns
and cities. Waste generation is very high,
especially in sugar, paper and pulp industries.
Such wastes can also be converted into energy.
 Biogas is a clean, unpolluted and
inexpensive source of energy for rural areas.
It contains nearly 70% of methane, an
inflammable gas. It is produced from cow
dung in a specific biogas plant commonly
called gobar gas plant. It helps in obtaining
both cooking fuel and enriched manure. It
can also be used for lighting and running
small engines.
How is biomass converted into
energy ?
 There are three basic processes involved in the
conversion of biomass into energy sources.
 Combustion pyrolysis: It is a process of chemical
decomposition at high temperature (as high as
50000c) in total or partial absence of air. It yields fuel
gas, ethanol and charcoal.
 Bio gasification : It is a process of anaerobic
digestion of biomass to produce a combustible gas
called biogas, containing methane and hydrogen.
 Fermentation: Conversion of sugars into alcohol to
produce ethane and solid residual fuel.
CONCLUSION
Thus in the recent years search for
alternative sources of energy has
yielded good results. If they are
properly put into use, we can be
self sufficient and can look towards
sustainable development.
Know this Facts:
The amount of solar energy reaching per square meter of
Earth’s atmosphere is called solar constant. It is equivalent
to 1.36 kw in 12 hours of time. Energy being received in the
atmosphere is about 1.5 x 1018 kwh per day
Pongamia pinnata (Honge) is another plant that yields
biofuel.
Government of Karnataka has a scheme to encourage
farmers to grow Jatropha in their field during lean periods of
agriculture. The seeds of the plant are purchased by the
government, to extract oil.
The largest installation of wind turbines in the country are
found near Kanya Kumari in Tamil Nadu
Jatropha is a hardly plant which can grow on any type of
soil, under any kind of agro-climatic conditions. The plant
can easily be propagated through seeds or stem cuttings. It
grows very fast. Moreover, it is not grazed by animals even
during periods of drought.
Alternate source of energy
Alternate source of energy

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Alternate source of energy

  • 1.
  • 2. What is the Need of Alternate Sources of Energy? The social, economic and scientific development of a country are directly linked to its energy resources. The conventional sources of energy that are being used for a long time, are generally non renewable. They include coal, petroleum, natural gas and electricity. We are using them so extensively that their reserves are depleting at a fast rate. At the same time, it is becoming increasingly difficult to discover new deposits. Keeping this in mind, there are attempts all over the world to tap alternative sources of energy.
  • 3.
  • 4. This Include energy from sun, wind, tides, geothermal sources, biomass and even from wastes. These forms of energy are abundant, renewable, pollution free and ecofriendly. They can also be conveniently made available in urban, rural and even remote areas. Use of non- conventional forms of energy can serve two purposes.  Supply of energy in a decentralized system.  Sustaining a cleaner environment
  • 5.
  • 6. Solar energy Sun provides us enormous amount of energy in the form of solar radiation. It reaches the Earth from a distance of about 150 million kilometers, in the form of small wave packets called photons. It is the result of continuous thermonuclear fusion taking place in the sun. 1. Conversion of solar energy into heat energy Solar energy falling on the surface of the earth can be converted into thermal energy. The heat generated can be stored in Solar collectors. It can be utilized for various purposes such as heating of water and cooking of food. 2.Conversion of solar energy into electrical energy It uses the principle of photo voltaic effect. Such a device is called solar cell. You have seen such solar cells being used in the traffic signals in cities, lighting lamps and pumping water and for other purposes in rural areas.
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  • 8. SOLAR POND  Solar Pond is one of the most promising technology in harnessing solar energy. It is a large scale solar collector with an integrated arrangement for storage of heating energy. Working : You know that water and air become lighter and rise above, when heated. When water is heated by solar radiation, hot water form the bottom of the pond rises and reaches the surface. It loses the heat gained, to the atmosphere. The result is that pond water remains at a temperature nearer to that of the atmosphere. This loss of heat is prevented by dissolving salts in the bottom of the pond. It makes water denser and hence, it cannot rise to the surface. Thus solar energy remains trapped in the pond.
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  • 10. Bio energy Includes those processes where biological matter such as plants and plant products provide the basis for energy and its conversion. Plant, organic matter, also called vegetable biomass, offers clean fuel for energy. Bio alternative to diesel The oil extracted from the seeds of the plant, Jatropha is now being used as a bio alternative to diesel. It requires the conversion of crude oil from the seeds to a commercially usefull fuel. This process is called trans estrerification.
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  • 12.  Wind energy is the kinetic energy associated with the movement of large masses of air, resulting from the differential heating of atmosphere by the sun.  Wind turbines are used for the purposes of obtaining wind energy.
  • 13. Wave energy  Movement of large quantities of water up and down in the seas and oceans, in the form of waves is also a source of energy.  However, the cost of energy conversion per unit, is very high, since it requires many special equipments to be created near the sea. Wave energy is however more reliable than wind energy since the fluctuations are comparatively less pronounced.
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  • 15.  It refers to heat of the Earth within 10km. from the surface. Geothermal energy has a temperature of about 13000C.  There are about 340 hot springs identified in different parts of our country. Of these, only a few have been used.
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  • 17. Energy from wastes  A huge quantity of waste is generated in our towns and cities. Waste generation is very high, especially in sugar, paper and pulp industries. Such wastes can also be converted into energy.
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  • 19.  Biogas is a clean, unpolluted and inexpensive source of energy for rural areas. It contains nearly 70% of methane, an inflammable gas. It is produced from cow dung in a specific biogas plant commonly called gobar gas plant. It helps in obtaining both cooking fuel and enriched manure. It can also be used for lighting and running small engines.
  • 20. How is biomass converted into energy ?  There are three basic processes involved in the conversion of biomass into energy sources.  Combustion pyrolysis: It is a process of chemical decomposition at high temperature (as high as 50000c) in total or partial absence of air. It yields fuel gas, ethanol and charcoal.  Bio gasification : It is a process of anaerobic digestion of biomass to produce a combustible gas called biogas, containing methane and hydrogen.  Fermentation: Conversion of sugars into alcohol to produce ethane and solid residual fuel.
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  • 22. CONCLUSION Thus in the recent years search for alternative sources of energy has yielded good results. If they are properly put into use, we can be self sufficient and can look towards sustainable development.
  • 23. Know this Facts: The amount of solar energy reaching per square meter of Earth’s atmosphere is called solar constant. It is equivalent to 1.36 kw in 12 hours of time. Energy being received in the atmosphere is about 1.5 x 1018 kwh per day Pongamia pinnata (Honge) is another plant that yields biofuel. Government of Karnataka has a scheme to encourage farmers to grow Jatropha in their field during lean periods of agriculture. The seeds of the plant are purchased by the government, to extract oil. The largest installation of wind turbines in the country are found near Kanya Kumari in Tamil Nadu Jatropha is a hardly plant which can grow on any type of soil, under any kind of agro-climatic conditions. The plant can easily be propagated through seeds or stem cuttings. It grows very fast. Moreover, it is not grazed by animals even during periods of drought.