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Tanta University Faculty of Science Botany Department Phycology Research Unit BY Abd El-Fatah Ibrahim Abo-Mohra Production of Biofuel From Microalgae
The world is entering a period of  declining non-renewable energy resources , while energy demand is increasing.  As a result of this impending energy crisis, both governments and private industry are  examining alternative sources of energy.
Our reliance on  fossil fuels  has caused carbon dioxide (CO 2 ) enrichment of the atmosphere, and is the primary contributor to the generally-accepted phenomenon called  global warming .
Global warming   can be accomplished by three conceptually different methods: 1. Reducing the use of fossil fuels. 2. Removing CO 2  from the atmosphere. 3. Capturing and sequestering or utilizing the CO 2  emitted by fossil fuel combustion before it enters the atmosphere.
In order to realize a stable energy  alternative  that will meet world demand while  mitigating  climate change,  it is necessary to develop renewable clean fuels.   Ironically, most renewable energy initiatives are focused on  electricity generation , while the majority of world energy consumption, about two thirds, is derived from  liquid fuels   (Hankamer  et al ., 2007) . The need for renewable sources of portable, liquid fuel is starting to receive greater attention, and much of this attention has been focused on  biomass-derived liquid fuels , or biofuels  (Schneider, 2006; Haag, 2006).
Biodiesel Biodiesel is a biofuel consisting of monoalkyl esters  (Demirbas, 2007).   At 60 °C, the reaction can complete in 90 minutes. CH 3 -O CH 3 -O CH 3 -O
The triglyceride is a complex molecule that plants and animals use for storing food energy; in more simple terms, it is  fat .  Molecular composition Triglyceride (Fats) Triglycerides are composed of three long hydrocarbon chains  bound together by one glycerol molecule.
The process of making biodiesel occurs as follows: A) The triglycerides, methanol, and catalyst are placed in a controlled reaction chamber to undergo  transesterification .  B) The initial product is placed in a separator to  remove the glycerine  by-product. C) The excess  methanol  is recovered from the methyl esters through  evaporation . D) The final biodiesel is rinsed with water and pH neutralized  (Xu  et al ., 2006).
Transterification ,[object Object],Methanol ,[object Object],[object Object],Glycerol
Transterification of lipids First Stage
Completed reaction mono-alkyl esters of long chain fatty acids Glycerol
Biodiesel has a number of advantages ,[object Object],[object Object],[object Object]
4) Because biodiesel has twice the  viscosity  of petroleum diesel, its lubrication properties can actually improve engine life  (Bowman  et al . 2006).   5) Biodiesel has low toxicity and is  biodegradable   (Aresta  et al ., 2005; Demirbas, 2007). 6) Biodiesel has a more  complete combustion , giving a cleaner burn  (Bowman  et al ., 2006).
 
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Biodiesel is not without problems ,[object Object],[object Object]
Biodiesel can be made from virtually any source of organic oil. Typical sources include  restaurant waste oil ,  animal fats , and  seed oils .  The supply of  waste oil  is very limited; however, it is a popular source for small scale producers. Large commercial producers often use  seed oils , such as soybean, rapeseed, palm, and corn oils.  UNFORTUNATELY , biodiesel derived from seed oil diverts from the  food  supply and the increasing competition for seed causes the oil, and resulting biodiesel, to become increasingly expensive.
Gasoline Additive MMT  ( methylcyclopentadienyl manganese tricarbonyl ( . MMT is a gasoline octane enhancer produced by the Afton Chemical Corporation  ( Afton ) , formerly known as the Ethyl Corporation .  MMT is allowed in U . S .  gasoline at a level equivalent to 1/32 grams per gallon manganese  ( gpg Mn ).
 
 
 
 
It has been estimated that 0.53 billion m 3  of biodiesel would be needed to replace current US transportation consumption of all petroleum fuels  (Christi, 2007).   Neither waste oil nor seed oil can come close to meeting the requirement for that much fuel; therefore, if biodiesel is to become a true replacement for petroleum, a  more productive source of oil is needed   (Scott and Bryner, 2006; Christi, 2007).
Algae as a Source of Biodiesel ,[object Object],[object Object],[object Object],[object Object]
Potential of Algae Biodiesel Yield of biodiesel per acre 15000 Algae 635 Palm Oil 287 Coconut 124 Rapeseed 113 Peanuts 48 Soybean Gal oil / Acre / year Crop
Advantages of Algae ,[object Object],[object Object]
3) Algae also have a greater capacity to  absorb CO 2  than land plants  (Brown and Zeiler, 1993). 4) Algae also not prone to  photosynthetic inhibition  under conditions of intense sunlight  (Brown and Zeiler, 1993). 5) After oil extraction from algae, the  remaining biomass  fraction can be used as a high protein feed for livestock  (Schneider, 2006; Haag, 2007);  this gives further value to the process and reduces waste. “ Algae has a chance to save the planet”   Dr. Michael Fertik
Algae cultivation Algae cultivation is typically performed in two ways open ponds bioreactors
 
 
 
 
Vertical mode Horizontal mode The use of CO2 for growing algae Greenhouse
 
Salton Sea, Cal.
[object Object],[object Object],[object Object],[object Object],BIOREACTORS  are the preferred method for scientific researchers. They allow for a very controlled environment . BUT , These systems are more  expensive  to build and operate.
What is the problem? What is the Aim? AND
The world is entering a period of  declining non-renewable energy resources , while energy demand is increasing.  Our reliance on fossil fuels has caused carbon dioxide (CO 2 ) enrichment of the atmosphere causing  global warming . The Problem Biodiesel derived from seed oil diverts from the  food  supply and the increasing competition for seed causes the  oil, and resulting biodiesel , to become increasingly expensive.
We need to use microalgae for the  high production  of biodiesel with  minimum costs .  The Aim
Best Regards Abo-Mohra

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Biodiesel Presentation

  • 1. Tanta University Faculty of Science Botany Department Phycology Research Unit BY Abd El-Fatah Ibrahim Abo-Mohra Production of Biofuel From Microalgae
  • 2. The world is entering a period of declining non-renewable energy resources , while energy demand is increasing. As a result of this impending energy crisis, both governments and private industry are examining alternative sources of energy.
  • 3. Our reliance on fossil fuels has caused carbon dioxide (CO 2 ) enrichment of the atmosphere, and is the primary contributor to the generally-accepted phenomenon called global warming .
  • 4. Global warming can be accomplished by three conceptually different methods: 1. Reducing the use of fossil fuels. 2. Removing CO 2 from the atmosphere. 3. Capturing and sequestering or utilizing the CO 2 emitted by fossil fuel combustion before it enters the atmosphere.
  • 5. In order to realize a stable energy alternative that will meet world demand while mitigating climate change, it is necessary to develop renewable clean fuels. Ironically, most renewable energy initiatives are focused on electricity generation , while the majority of world energy consumption, about two thirds, is derived from liquid fuels (Hankamer et al ., 2007) . The need for renewable sources of portable, liquid fuel is starting to receive greater attention, and much of this attention has been focused on biomass-derived liquid fuels , or biofuels (Schneider, 2006; Haag, 2006).
  • 6. Biodiesel Biodiesel is a biofuel consisting of monoalkyl esters (Demirbas, 2007). At 60 °C, the reaction can complete in 90 minutes. CH 3 -O CH 3 -O CH 3 -O
  • 7. The triglyceride is a complex molecule that plants and animals use for storing food energy; in more simple terms, it is fat . Molecular composition Triglyceride (Fats) Triglycerides are composed of three long hydrocarbon chains bound together by one glycerol molecule.
  • 8. The process of making biodiesel occurs as follows: A) The triglycerides, methanol, and catalyst are placed in a controlled reaction chamber to undergo transesterification . B) The initial product is placed in a separator to remove the glycerine by-product. C) The excess methanol is recovered from the methyl esters through evaporation . D) The final biodiesel is rinsed with water and pH neutralized (Xu et al ., 2006).
  • 9.
  • 11. Completed reaction mono-alkyl esters of long chain fatty acids Glycerol
  • 12.
  • 13. 4) Because biodiesel has twice the viscosity of petroleum diesel, its lubrication properties can actually improve engine life (Bowman et al . 2006). 5) Biodiesel has low toxicity and is biodegradable (Aresta et al ., 2005; Demirbas, 2007). 6) Biodiesel has a more complete combustion , giving a cleaner burn (Bowman et al ., 2006).
  • 14.  
  • 15.
  • 16.
  • 17. Biodiesel can be made from virtually any source of organic oil. Typical sources include restaurant waste oil , animal fats , and seed oils . The supply of waste oil is very limited; however, it is a popular source for small scale producers. Large commercial producers often use seed oils , such as soybean, rapeseed, palm, and corn oils. UNFORTUNATELY , biodiesel derived from seed oil diverts from the food supply and the increasing competition for seed causes the oil, and resulting biodiesel, to become increasingly expensive.
  • 18. Gasoline Additive MMT ( methylcyclopentadienyl manganese tricarbonyl ( . MMT is a gasoline octane enhancer produced by the Afton Chemical Corporation ( Afton ) , formerly known as the Ethyl Corporation . MMT is allowed in U . S . gasoline at a level equivalent to 1/32 grams per gallon manganese ( gpg Mn ).
  • 19.  
  • 20.  
  • 21.  
  • 22.  
  • 23. It has been estimated that 0.53 billion m 3 of biodiesel would be needed to replace current US transportation consumption of all petroleum fuels (Christi, 2007). Neither waste oil nor seed oil can come close to meeting the requirement for that much fuel; therefore, if biodiesel is to become a true replacement for petroleum, a more productive source of oil is needed (Scott and Bryner, 2006; Christi, 2007).
  • 24.
  • 25. Potential of Algae Biodiesel Yield of biodiesel per acre 15000 Algae 635 Palm Oil 287 Coconut 124 Rapeseed 113 Peanuts 48 Soybean Gal oil / Acre / year Crop
  • 26.
  • 27. 3) Algae also have a greater capacity to absorb CO 2 than land plants (Brown and Zeiler, 1993). 4) Algae also not prone to photosynthetic inhibition under conditions of intense sunlight (Brown and Zeiler, 1993). 5) After oil extraction from algae, the remaining biomass fraction can be used as a high protein feed for livestock (Schneider, 2006; Haag, 2007); this gives further value to the process and reduces waste. “ Algae has a chance to save the planet” Dr. Michael Fertik
  • 28. Algae cultivation Algae cultivation is typically performed in two ways open ponds bioreactors
  • 29.  
  • 30.  
  • 31.  
  • 32.  
  • 33. Vertical mode Horizontal mode The use of CO2 for growing algae Greenhouse
  • 34.  
  • 36.
  • 37. What is the problem? What is the Aim? AND
  • 38. The world is entering a period of declining non-renewable energy resources , while energy demand is increasing. Our reliance on fossil fuels has caused carbon dioxide (CO 2 ) enrichment of the atmosphere causing global warming . The Problem Biodiesel derived from seed oil diverts from the food supply and the increasing competition for seed causes the oil, and resulting biodiesel , to become increasingly expensive.
  • 39. We need to use microalgae for the high production of biodiesel with minimum costs . The Aim

Editor's Notes

  1. The price of vegoils now closely follows the price of crude petroleum because of the mandates and incentives to make biodiesel Recently soyoil prices actually have increased at a fast rate than petroleum