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 Introduction 
 Production of Bioethanol 
 Bioethanol Need of future 
 Advantages & Disadvantages 

Raw material : 
Wheat/Grains/Corn/Sugar-cane can be used 
to produce ethanol. (Basically, any plants that 
composed largely of sugars) 
The raw materials used in the manufacture of 
ethanol via fermentation are conveniently 
classified into three main types of raw 
materials: sugars, starches, and cellulose
Potato 
 Mashing and Washing 
 Cooking 
 Starch hydrolysis 
1- Liquefaction 2-saccherification 
Fermentation 
Distillation 
Ethanol
• Used as a raw material in ethanol 
production 
• By exposing starch from peel of corn with 
water 
• Enzymes are added to the mash that 
convert starch to dextrose, a simple 
sugar. 
• yeast is added and conversion from 
sugar to ethanol and carbon 
dioxide begins.
 Extraction of sugar 
 Then it is added to yeast for fermentation 
process 
 lactic acid, hydrogen, carbondioxide 
,ethanol are produced
Ethanol-powered 
buses (E95) - 
still a pilot 
project in 
Brazil 
Flex-fuel motorcycles 
Brazilian-made 
crop dusting 
planes 
running on 
ethanol
› Exhaust gases of ethanol are much cleaner 
› ethanol-blended fuels such as E85 (85% ethanol and 15% gasoline) 
reduce up to 37.1% of GHGs 
› output of energy during the production is more than the input 
› the CO2 released in the bioethanol production process is the same 
amount as the one the crops previously absorbed during 
photosynthesis
 Not as efficient as petroleum 
› energy content of the petrol is much higher than bioethanol 
› its energy content is 70% of that of petrol 
 Engines made for working on Bioethanol cannot be used for 
petrol or diesel 
› Due to high octane number of bioethanol, they can be 
burned in the engines with much higher compression ratio 
 Used of phosphorous and nitrogen in the production 
› negative effect on the environment 
 Cold start difficulties 
› pure ethanol is difficult to vaporise
 For bioethanol to become more sustainable to replace petrol, 
production process has to be more efficient 
› Reducing cost of conversion 
› Increasing yields 
› Increase the diversity of crop used 
 As microbes are use to convert glucose into sugar which is ferment 
in bioethanol 
› Microbiology and biotechnology will be helpful in the genetic 
engineering
bioethanol production

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bioethanol production

  • 1.
  • 2.  Introduction  Production of Bioethanol  Bioethanol Need of future  Advantages & Disadvantages 
  • 3.
  • 4. Raw material : Wheat/Grains/Corn/Sugar-cane can be used to produce ethanol. (Basically, any plants that composed largely of sugars) The raw materials used in the manufacture of ethanol via fermentation are conveniently classified into three main types of raw materials: sugars, starches, and cellulose
  • 5. Potato  Mashing and Washing  Cooking  Starch hydrolysis 1- Liquefaction 2-saccherification Fermentation Distillation Ethanol
  • 6. • Used as a raw material in ethanol production • By exposing starch from peel of corn with water • Enzymes are added to the mash that convert starch to dextrose, a simple sugar. • yeast is added and conversion from sugar to ethanol and carbon dioxide begins.
  • 7.  Extraction of sugar  Then it is added to yeast for fermentation process  lactic acid, hydrogen, carbondioxide ,ethanol are produced
  • 8. Ethanol-powered buses (E95) - still a pilot project in Brazil Flex-fuel motorcycles Brazilian-made crop dusting planes running on ethanol
  • 9. › Exhaust gases of ethanol are much cleaner › ethanol-blended fuels such as E85 (85% ethanol and 15% gasoline) reduce up to 37.1% of GHGs › output of energy during the production is more than the input › the CO2 released in the bioethanol production process is the same amount as the one the crops previously absorbed during photosynthesis
  • 10.  Not as efficient as petroleum › energy content of the petrol is much higher than bioethanol › its energy content is 70% of that of petrol  Engines made for working on Bioethanol cannot be used for petrol or diesel › Due to high octane number of bioethanol, they can be burned in the engines with much higher compression ratio  Used of phosphorous and nitrogen in the production › negative effect on the environment  Cold start difficulties › pure ethanol is difficult to vaporise
  • 11.  For bioethanol to become more sustainable to replace petrol, production process has to be more efficient › Reducing cost of conversion › Increasing yields › Increase the diversity of crop used  As microbes are use to convert glucose into sugar which is ferment in bioethanol › Microbiology and biotechnology will be helpful in the genetic engineering