02731ntm a2200325 i 4500001001400000003000700014005001700021008004100038020002200079040002300101100003500124245012300159264003400282264001200316300007700328336002100405336002100426337002500447337002300472338002300495338003000518347002400548500005600572502009300628504004000721520151700761610007102278650004502349650001102394vtls000102808KUKTEM20251117113358.0180118s2017 my da f a m 000 0 eng d aTHE0001021(Local) aUMPbengcUMPerda0 aNurul Syafiqah Rosli,eauthor.10aBiogasoline synthesis through fluid catalytic cracking of rubber seed oil - effect of catalyst /cNurul Syafiqah Rosli 1aKuantan, Pahang :bUMP,c2017 4c© 2017 aix, 31 pages :billustrations (some color), charts ;c30 cm. +e1 CD-ROM atext2rdacontent atext2rdacontent aunmediated2rdamedia acomputer2rdamedia avolume2rdacarrier acomputer disc2rdacarrier atext filebPDF2rda aFaculty of Chemical & Natural Resources Engineering aProject Paper (Bachelors of Chemical Engineering) -- Universiti Malaysia Pahang – 2017 aIncludes bibliographical references3 aBiogasoline is an alternative solution towards reducing global fossil fuel consumptions. Currently, there are numerous researches focusing on different feedstock of vegetable oils used to synthesis biodiesel is performed but less is focusing on biogasoline production. Therefore, the new approach to synthesis biogasoline is implemented in this study. Rubber seed oil (RSO) is studied as a feedstock to synthesis biogasoline through fluid catalytic cracking process using ZSM-5 as a catalyst. It is feasible to produce biofuels rich in different fractions such as gasoline, kerosene and diesel via catalytic cracking technique from edible and inedible oils and also plant extracts. In this study, Dean Stark method is applied as experimental set up. The amount of ZSM-5 is varied from 0.5 grams to 2.0 grams at 250℃. The experiment is run at 1 minute, 5 minute and 10 minute and the sample collected will be analyzed using Gas Chromatography Mass Spectrometry. The molecular formula of hydrocarbon obtained from the analysis of sample will be compared with standard gasoline range which is ̧œ6 to ̧œ9. Thus, the large the amount of hydrocarbon (wt%) with range of ̧œ6 to ̧œ9 is expected from the sample of product obtained from the fluid catalytic cracking of RSO. Therefore, based from the experiment and analysis of the sample obtained, the optimum condition to obtain the highest yield (58.15%) of biogasoline is using 1.5 g of catalyst and 10 g of RSO at five minutes reaction time.20aFaculty of Chemical & Natural Resources EngineeringxDissertations 0aUniversities and CollegesxDissertations 0aTheses