02908nam a2200313 a 4500001001400000003000700014005001700021008004100038020002200079039011600101040000800217090003000225100002600255245013800281260003400419300004500453502009000498504002800588520151200616650002002128650002402148650001202172650001402184650001602198952012402214952013402338999002502472999009702497vtls000074980KUKTEM20251114204546.0131004t2013 my da f m 000 0 eng d aTHE0004627(Local) 9a201905170944bazharc201311141144dnabilahc201310231000dnabilahc201310091521dnabilahy201310041603znabilah aUMP aTP359.B46 H37 2013 rs Bc.0 aSiti Norhaslina Halim10aSynthesis on bio reaction kinetics of biodiesel production from rubber seed oil using lipase as the catalyst /cSiti Norhaslina Halim aKuantan, Pahang :bUMP,c2013 axii, 54 p. :bill. ;c30 cm. +e1 CD-ROM aProject paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang - 2013 aBibliography : p. 42-453 aEnergy is fundamental to the quality of life on the earth. Meeting the growing demand for energy sustainably is one of the major challenges of the 21st century. The number of human also continuously grows bigger, causing energy request become higher. That is why our energy such as petroleum depleting very fast. The situation has led to the search for an alternative source of energy. The purpose of this study is to study on bio reaction kinetics of biodiesel production from rubber seed oil using lipase as the catalyst. Biodiesel is an alternative fuel that produced by chemical reaction of vegetable oil or animal fat with an alcohol which used for diesel engines. Biodiesel have advantages to use as a renewable energy like fossil fuel such as it is non toxic, biodegradable and greenhouse gas neutral. Biodiesel produced by using transesterification process. Transesterification process is triglycerides react with methanol and aid of catalyst produce methyl ester and glycerol as by product. In this study, we only focus the biodiesel production using enzymatic process. In this process, catalyst that will use is lipase Pseudomonas cepacia (P. Cepacia). The process optimization consisted of (a) Alcohol to oil molar ratio, (b) Catalyst amount, (c) Reaction temperature, and (d) Reaction time. 1H NMR spectrum of the RSO and biodiesel samples are analysed which confirms the conversion of RSO to biodiesel. The biodiesel properties have been investigated and are found to be comparable with diesel. 0aBiodiesel fuels 0aTransesterification 0aEnzymes 0aCatalysis 0aFatty acids 00104071a10000b10000d2019-09-04l0oTP359.B46 H37 2013 rs Bc.p0000074865r2019-09-04 00:00:00t1w2019-09-04yPSM 00104071a10000b10000d2019-09-04l0oCD 7132 | TP359.B46 H37 2013 rs Bc.p0000074866r2019-09-04 00:00:00t1w2019-09-04yPSM aVIRTUA40c4092d4098 aVTLSSORT0080*0200*0400*0900*1000*2450*2600*3000*5020*5040*5200*6500*6501*6502*6503*6504*9992