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OUTLINE
 QUEST FOR FUTURE FUELS
 TYPES OF FUTURE FUELS
 FUELS
 HOW THEY ARE PREPARED
 USES
 CONCLUSIONS
 REFERENCES
QUEST FOR FUTURE FUELS
 Fuel resources that our planet hold is exhaustible and will end in
  the coming future
 Rapid industrialization and massive growth in population has
  increased the dependence and use of natural fuels
 Approximately 90% of our energy requirement are met by fossil
  fuels
 This increase in energy consumption particularly in the past
  several decades has raised fears of exhausting vital natural
  resources
 So this has placed a need for us to engage ourselves in search of
  fuels which would support us in the future when no fossil fuels are
  present
TYPES OF FUTURE FUELS
 BIODIESEL

 Derived from Soy bean, sunflowers, corn, olive, peanut, palm, coconut and
   animal fats

 Has same vehicular performance as Diesel


 Economical fuel source


 It is sulfur free


 Completely renewable fuel source
HOW IS IT PRODUCED

 chemically reacting lipids (e.g., vegetable oil, animal fat )with
  an alcohol producing fatty acid esters which is biodiesel


USES

 Mixed with diesel to reduce pollution


 Can be directly used in vehicles
 HYDROGEN


 It is an emission less fuel


 By-product of hydrogen burning is water


 Stores up to 3x as much energy as conventional
  natural gas

 If used in a car, it would take comparatively less to fill it
  up than a car running on standard fuel due to the
  hydrogen fuel cell efficiency
WAYS TO PRODUCE HYDROGEN

 hydrogen is usually produced by the steam
  reforming of methane or natural gas
        CH4 + H2O → CO + 3 H2 + 191.7 kJ/mol

 Partial oxidation of sub stoichiometric fuel-air
  mixture in a reformer, creating a hydrogen-rich syngas
           C12H24 + 6 O2 → 12 CO + 12 H2

 H2 is also produced by Coal Gasification yielding
  syngas
USES

 H2 is widely used in fuel cells for electricity generation and vehicle
  propulsion


 Widely used for Rocket Engines
 ALCOHOL FUELS


 They are convenient fuels for storing and transporting energy


 Is a renewable energy source


 Can be produced from a variety of feedstock such as sugar
  cane, potatoes, sweet potatoes, molasses, corn, etc.


 Is a particulate-free burning fuel source
HOW IS IT PRODUCED

 Methanol is produced from natural gas, although it can be
  produced from biomass using very similar chemical processes

 Ethanol is commonly produced from biological material through
  fermentation processes
              C6H12O6 → 2 C2H5OH + 2 CO2


USES

 Most commonly used to power automobiles
 Additive for gasoline
 NUCLEAR REACTORS


 Nuclear power is a nuclear technology designed to extract usable
  energy from atomic nuclei via controlled nuclear reactions


 Nuclear power is usually used by using a nuclear reactor to heat a
  working fluid such as water, which is then used to create steam
  pressure, which is converted into mechanical work for the
  purpose of generating electricity or propulsion in water


 It is completely a pollution free source, however spent nuclear fuel
  poses a threat
HOW IS NUCLEAR FUEL PRODUCED

 To prepare uranium for use in a nuclear reactor, it undergoes the
  steps of mining and milling, conversion, enrichment and fuel
  fabrication
USES

 It is most widely used for electricity generation


 TOPAZ nuclear reactor are built to minimize moving parts and use
  methods that convert nuclear energy to electricity directly making
  them useful for space missions


 Naval vessels making use nuclear powered engines have come
  into existence


 Nuclear powered crafts are under development
 RADIOTHERMAL GENERATORS


 Radio Thermal Generators produce electricity from
  the decay of a radioisotope


 Radioisotopes have been used as alternative fuels,
  on both land and in space


 The decay of radioisotopes generates both heat and electricity in
  many space probes, particularly probes to outer planets where
  sunlight is weak, and low temperatures is a problem
CONCLUSIONS
 The future fuel sources are environment-friendly as opposed to
  fossil fuels


 Throughout the year these sources are available without affecting
  the Environment


 Using these fuels helps diminish Global Warming


 Helps conserve natural resources
REFERENCES
 “Alternate Fuels”. 20 september 2012.
  http://www.gvepinternational.org/en/business/biofuels

 “Hydrogen”. 20 september 2012.
   http://www.alternatefuels.com/hydrogen.htm

 “Ethanol Fuel”. 20 september 2012.
   http://en.wikipedia.org/wiki/Ethanol_fuel

 “Future Fuels”. 21 september 2012.
   http://www.rac.co.uk/advice/car-knowledge/top-ten/top-10-future-
fuels/
Future fuels

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Future fuels

  • 1.
  • 2. OUTLINE  QUEST FOR FUTURE FUELS  TYPES OF FUTURE FUELS  FUELS  HOW THEY ARE PREPARED  USES  CONCLUSIONS  REFERENCES
  • 3. QUEST FOR FUTURE FUELS  Fuel resources that our planet hold is exhaustible and will end in the coming future  Rapid industrialization and massive growth in population has increased the dependence and use of natural fuels  Approximately 90% of our energy requirement are met by fossil fuels  This increase in energy consumption particularly in the past several decades has raised fears of exhausting vital natural resources  So this has placed a need for us to engage ourselves in search of fuels which would support us in the future when no fossil fuels are present
  • 4. TYPES OF FUTURE FUELS  BIODIESEL  Derived from Soy bean, sunflowers, corn, olive, peanut, palm, coconut and animal fats  Has same vehicular performance as Diesel  Economical fuel source  It is sulfur free  Completely renewable fuel source
  • 5. HOW IS IT PRODUCED  chemically reacting lipids (e.g., vegetable oil, animal fat )with an alcohol producing fatty acid esters which is biodiesel USES  Mixed with diesel to reduce pollution  Can be directly used in vehicles
  • 6.  HYDROGEN  It is an emission less fuel  By-product of hydrogen burning is water  Stores up to 3x as much energy as conventional natural gas  If used in a car, it would take comparatively less to fill it up than a car running on standard fuel due to the hydrogen fuel cell efficiency
  • 7. WAYS TO PRODUCE HYDROGEN  hydrogen is usually produced by the steam reforming of methane or natural gas CH4 + H2O → CO + 3 H2 + 191.7 kJ/mol  Partial oxidation of sub stoichiometric fuel-air mixture in a reformer, creating a hydrogen-rich syngas C12H24 + 6 O2 → 12 CO + 12 H2  H2 is also produced by Coal Gasification yielding syngas
  • 8. USES  H2 is widely used in fuel cells for electricity generation and vehicle propulsion  Widely used for Rocket Engines
  • 9.  ALCOHOL FUELS  They are convenient fuels for storing and transporting energy  Is a renewable energy source  Can be produced from a variety of feedstock such as sugar cane, potatoes, sweet potatoes, molasses, corn, etc.  Is a particulate-free burning fuel source
  • 10. HOW IS IT PRODUCED  Methanol is produced from natural gas, although it can be produced from biomass using very similar chemical processes  Ethanol is commonly produced from biological material through fermentation processes C6H12O6 → 2 C2H5OH + 2 CO2 USES  Most commonly used to power automobiles  Additive for gasoline
  • 11.  NUCLEAR REACTORS  Nuclear power is a nuclear technology designed to extract usable energy from atomic nuclei via controlled nuclear reactions  Nuclear power is usually used by using a nuclear reactor to heat a working fluid such as water, which is then used to create steam pressure, which is converted into mechanical work for the purpose of generating electricity or propulsion in water  It is completely a pollution free source, however spent nuclear fuel poses a threat
  • 12. HOW IS NUCLEAR FUEL PRODUCED  To prepare uranium for use in a nuclear reactor, it undergoes the steps of mining and milling, conversion, enrichment and fuel fabrication
  • 13. USES  It is most widely used for electricity generation  TOPAZ nuclear reactor are built to minimize moving parts and use methods that convert nuclear energy to electricity directly making them useful for space missions  Naval vessels making use nuclear powered engines have come into existence  Nuclear powered crafts are under development
  • 14.  RADIOTHERMAL GENERATORS  Radio Thermal Generators produce electricity from the decay of a radioisotope  Radioisotopes have been used as alternative fuels, on both land and in space  The decay of radioisotopes generates both heat and electricity in many space probes, particularly probes to outer planets where sunlight is weak, and low temperatures is a problem
  • 15. CONCLUSIONS  The future fuel sources are environment-friendly as opposed to fossil fuels  Throughout the year these sources are available without affecting the Environment  Using these fuels helps diminish Global Warming  Helps conserve natural resources
  • 16. REFERENCES  “Alternate Fuels”. 20 september 2012. http://www.gvepinternational.org/en/business/biofuels  “Hydrogen”. 20 september 2012. http://www.alternatefuels.com/hydrogen.htm  “Ethanol Fuel”. 20 september 2012. http://en.wikipedia.org/wiki/Ethanol_fuel  “Future Fuels”. 21 september 2012. http://www.rac.co.uk/advice/car-knowledge/top-ten/top-10-future- fuels/