Comparative study of chemical characteristic of Waste Cooking Oil biodiesel synthesized via novel method / Nur Aqilah Zaini and Prof. Madya Dr. Abdul Hadi Zainal

Biodiesel is a great alternative of clean fuels and energy and has already received great attention due to spike in demand. Biodiesel is a petroleum diesel substitute and one of the favorable source of biofuels due to its biodegradability and environmental compatibility. The chemical characteristic...

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Main Authors: Zaini, Nur Aqilah (Author), Zainal, Abdul Hadi (Author)
Format: Book
Published: 2020.
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100 1 0 |a Zaini, Nur Aqilah  |e author 
700 1 0 |a Zainal, Abdul Hadi  |e author 
245 0 0 |a Comparative study of chemical characteristic of Waste Cooking Oil biodiesel synthesized via novel method / Nur Aqilah Zaini and Prof. Madya Dr. Abdul Hadi Zainal 
260 |c 2020. 
500 |a https://ir.uitm.edu.my/id/eprint/81375/1/81375.pdf 
520 |a Biodiesel is a great alternative of clean fuels and energy and has already received great attention due to spike in demand. Biodiesel is a petroleum diesel substitute and one of the favorable source of biofuels due to its biodegradability and environmental compatibility. The chemical characteristic of Waste Cooking Oil biodiesel novel method was evaluated. The objective of this research is to compare synthesized biodiesel from waste cooking oil and to characterize the properties of biodiesel from different transesterification variables. The properties is to be compared with fuel quality standard which is standard ASTM D6571 and European Norm EN14214. One Step Transesterification and Two Step Transesterification was compared with molar ratio alcohol to oil, reaction temperature and reaction time as parameter. Different online library such as Science Direct and Google Scholar is used to gather relevant articles for the comparison. The result from the collected articles is compared to the quality standard and the best quality of fuel is to be determined. The study found that the optimum condition for One Step Transesterification to produce biodiesel with high yield is at 6:1 molar ratio of alcohol to oil, 65 ℃ reaction temperature and 120 min reaction time. While for Two Step Transesterification the optimum condition to produce biodiesel with high yield is at 6:1 molar ratio of alcohol to oil, 25 ℃ reaction temperature and 60 min reaction time. and the best quality of biodiesel in regards low acid value and iodine value. The study also found that One Step Base Catalyzed Transesterification produce the best quality of biodiesel in regards of high cetane number and low saponification value while The study also found that Two Step Acid-Base Catalyzed Transesterification produce the best quality of biodiesel in regards of low acid value and low iodine value. 
546 |a en 
690 |a Fuel 
690 |a Biodiesel fuels 
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