Please use this identifier to cite or link to this item: http://repository.ipb.ac.id/handle/123456789/76074
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dc.contributor.authorSetyawati, Inda
dc.contributor.authorAmbarsari, Laksrni
dc.contributor.authorNur'aeni, Siti
dc.contributor.authorSuryani
dc.contributor.authorPuspita, Puspa Julistia
dc.contributor.authorKurniatin, Popi Asri
dc.contributor.authorNurcholis, Waras
dc.date.accessioned2015-08-18T02:26:12Z
dc.date.available2015-08-18T02:26:12Z
dc.date.issued2015
dc.identifier.issn2355-7877-
dc.identifier.urihttp://repository.ipb.ac.id/handle/123456789/76074
dc.description.abstractEthanol is considered as the most promising alternative fuel, since it can be produced from a variety of agriculturally-based renewable materials, such as sugarcane bagasse. Lignocellulose as a major component of sugarcane bagasse is considered as an attractive renewable resource for ethanol production due to its great availability and relatively low cost. The major problem of lignocellulose is caused by its need/or treatment to be hydrolyzed to simple sugar before being used/or bioethanol production. However, pretreatment using acid as hydroZvzing agent creates some inhibitor compoundr; that reduce ethanol production because these compounds are potential fermentation inhibitors and qffect the growth rate of the yeast. Reduction of these by-products requires a conditioning (detoxification and culture starter adaptation). Thus, the aim of this study was to evaluate bioethanol production by fermentation with and without detoxified sugarcane bagasse acid hydrolysate using adapted and non-adapted culture of C. tropical is. According to this study, the highest ethanol amount was obtained about 0.43 % (vlv) with an ethanol yield of 2.51 % and theoretical yield of 4.92 % by fermentation of sugarcane bagasse hydrolysate with detoxification using the adapted strain of C. tropicalis at 72 hours fermentation time. Furthermore, the addition of 3 % glucose as co-substrate on detoxified-hydrolysate media only achieved the highest ethanol concentration 0.21 % after 24 hours fermentation with the ethanol yield 0.69 % and theoretical ethanol yield 1.35 %, thus it can be concluded that the addition of glucose could not increase the ethanol production.en
dc.language.isoen
dc.publisherDep. Biochemistry FMIPA IPB dan PBBMI, Bogor's Chapter
dc.relation.ispartofseriesVolume II;Issue I April 2015-
dc.titleBioethanol Production by Using Detoxified Sugarcane Bagasse Hydrolysate and Adapted Culture of Candida tropicalisen
dc.typeArticleen
dc.subject.keywordadapted cultureen
dc.subject.keywordbioethanolen
dc.subject.keywordCandida tropicalisen
dc.subject.keyworddetoxificationen
dc.subject.keywordlignocelluloseen
dc.subject.keywordsugarcane bagasseen
Appears in Collections:Bio-Chemistry

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