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dc.contributor.advisorMarchetti, Jorge Mario
dc.contributor.authorOsborg, Miriam Velle
dc.coverage.spatialNorway, Åsnb_NO
dc.date.accessioned2016-08-30T12:37:38Z
dc.date.available2016-08-30T12:37:38Z
dc.date.issued2016-08-30
dc.identifier.urihttp://hdl.handle.net/11250/2402828
dc.description.abstractBiodiesel, a renewable fuel of a vegetal origin is continuously getting more pronounced. Fossil fuels are finite resources and a contributing factor to environmental change [1], making biodiesel an important environmental friendly alternative. In the process of making biodiesel competitive with the price of fossil fuels, the use of a heterogeneous catalyst is a measure worth considering. Heterogeneous catalysts have the advantages of being able to reduce product rinsing and obtain reusability. This leads to the purpose of this study, presenting a screening of operation variables effects on the catalysed alcoholysis processes. Acetic acid and ethanol was used in an esterification reaction with three different heterogeneous catalysts. In the conclusions, it is stated that Tulsion-6812 and Tulsion-63 needs further study on catalyst rinsing. Due to severe leaching, they are not preferable in the matter tested in this study. Untreated Amberlyst-16w had no leaching, and the parameters tested provided a trend of higher conversions with higher temperatures. Further, it spent shorter time spent until reaching equilibrium with higher catalyst amount. The reaction yielded faster reaction rates with low molar ratios, although higher final conversions with higher molar ratios were obtained. The Amberlyst-16w catalyst is also proved to be reutilized four times.nb_NO
dc.description.abstractBiodiesel er eit drivstoff med opphav frå vegetabilske oljer, som stadig vekker større interesse. Fossile drivstoff er ein avgrensa ressurs som også bidrege til klimaendringar[1], dette gjer biodisel til eit viktig miljøvenleg alternativ. For å gjere biodiesel meir konkurransedyktig er val av katalysator viktig. Heterogene katalysatorar har fordelar som å vere gjenbrukbare og kan til dømes filtrerast ut av produkta etter bruk, som igjen reduserer naudsynt reinsing av produkta. I dette studiet har tre heterogene katalysatorar vorte testa. Eddiksyre og etanol var reaktantar i esterifiseringsreaksjonen. Tulsion-6812 og -63 fungerer dårleg som heterogene katalysatorar i prosessane testa i dette studiet. Ubehandla Amberlyst-16w hadde ingen lekkasje, og har følgande trendar; å gi høgre konversjon med høgare temperaturar, raskare nå likepunktet med høgre katalysatormengde og raskare reaksjonshastigheit ved lågare molar rate men nå høgre sluttkonversjonar med høgre. Amberlyst-16w viste seg gjenbrukbar minst fire gongar.nb_NO
dc.language.isoengnb_NO
dc.publisherNorwegian University of Life Sciences, Ås
dc.subjectesterificationnb_NO
dc.subjectTulsion-6812nb_NO
dc.subjectTulsion-63nb_NO
dc.subjectAmberlyst-16wnb_NO
dc.subjectbiodieselnb_NO
dc.subjectparameter screeningnb_NO
dc.subjectkineticsnb_NO
dc.subjectacetic acidnb_NO
dc.subjectethanolnb_NO
dc.titleThe use of Tulsion-6812, Tulsion-63 and Amberlyst-16w in the production of biodieselnb_NO
dc.typeMaster thesisnb_NO
dc.subject.nsiVDP::Technology: 500::Chemical engineering: 560::Chemical process engineering: 562nb_NO
dc.subject.nsiVDP::Mathematics and natural science: 400::Physics: 430nb_NO
dc.source.pagenumber112nb_NO
dc.description.localcodeM-MFnb_NO


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