01965nam a2200217 a 4500001001400000003000700014005001700021008004000038020002200078040000800100100002400108245013100132246012500263260003400388300004700422502009000469504002800559520112600587650002001713650001401733vtls000045101KUKTEM20251114204421.0100205t2009 my a f m 000 0 engd aTHE0004614(Local) aUMP0 aSiti Fatimah Arifin10aProduction of biodiesel from waste cooking oil and RBD palm oil using batch transesterification process /cSiti Fatimah Arifin3 aProduction of biodiesel from waste cooking oil and RBD palm oil using batch transesterification processh[computer file] aKuantan, Pahang :bUMP,c2009 a51 p. :bill. ;c30 cm. +e1 computer disc aProject paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang - 2009 aBibliography : p. 33-353 aWaste Cooking Oil (WCO) has significant potential as the raw material or starting substance for biodiesel production. The objective of this research is to examine the performance of yield and purity of biodiesel from WCO as the starting material with different catalyst (NaOCH3) concentration and reaction time via single step batch transesterification process. It is also to investigate the extent to which the sodium methoxide (NaOCH3) as the catalyst and the effect of batch transesterification process on various parameters in production of biodiesel. The purity of methyl ester content in biodiesel is measured by Gas Chromatography. The exhaust emissions of biodiesel produced were evaluated by combustion test using Gas Combustion Unit. Results indicate that the higher conversion was obtained when RBD palm oil which is 98.2% yield and 97.5% purity instead of 96.8% yield and 94.7% purity in WCO used as the raw material. Biodiesel produced from WCO gives less exhaust emission of CO and CO2 compared to commercial diesel thus contributed to the reduction of greenhouse gas that effect the global warming.-Author- 0aBiodiesel fuels 0aCatalysis