Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production

roduction of biodiesel is currently shifting from the first to the second generation in which the raw materials are mostly from non-edible type oils and fats. Biodiesel production is commonly conducted under batch operation using mechanical agitation to accelerate mass transfers. The main drawback o...

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Bibliographic Details
Main Authors: Berkah Fajar Tamtomo Kiono, W Widayat
Format: Article
Language:English
Published: Diponegoro University 2012-02-01
Series:International Journal of Renewable Energy Development
Subjects:
Online Access:http://www.ijred.com/index.php/ijred/article/view/21/21
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spelling doaj-3a8695a4b3e8482a95eae46eb5a039072021-01-02T13:37:04ZengDiponegoro UniversityInternational Journal of Renewable Energy Development2252-49402012-02-011115Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel ProductionBerkah Fajar Tamtomo KionoW Widayatroduction of biodiesel is currently shifting from the first to the second generation in which the raw materials are mostly from non-edible type oils and fats. Biodiesel production is commonly conducted under batch operation using mechanical agitation to accelerate mass transfers. The main drawback of oil esterification is the high content of free fatty acids (FFA) which may reduce the yield of biodiesel and prolong the production time (2-5 hours). Ultrasonification has been used in many applications such as component extraction due to its ability to produce cavitation under certain frequency. This research is aimed to facilitate ultrasound system for improving biodiesel production process particularly rubber seed oil. An ultrasound unit was used under constant temperature (40oC) and frequency of 40 Hz. The result showed that ultrasound can reduces the processing time and increases the biodiesel yield significantly. A model to describe correlation of yield and its independent variables is yield (Y) = 43,4894 – 0,6926 X1 + 1,1807 X2 – 7,1042 X3 + 2,6451 X1X2 – 1,6557 X1X3 + 5,7586 X2X3 - 10,5145 X1X2X3, where X1 is mesh sizes, X2 ratio oil: methanol and X3 type of catalyst.http://www.ijred.com/index.php/ijred/article/view/21/21Rubber seed oilUltrasoundEsterificationBiodieselYield
collection DOAJ
language English
format Article
sources DOAJ
author Berkah Fajar Tamtomo Kiono
W Widayat
spellingShingle Berkah Fajar Tamtomo Kiono
W Widayat
Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
International Journal of Renewable Energy Development
Rubber seed oil
Ultrasound
Esterification
Biodiesel
Yield
author_facet Berkah Fajar Tamtomo Kiono
W Widayat
author_sort Berkah Fajar Tamtomo Kiono
title Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
title_short Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
title_full Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
title_fullStr Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
title_full_unstemmed Ultrasound Assisted Esterification of Rubber Seed Oil for Biodiesel Production
title_sort ultrasound assisted esterification of rubber seed oil for biodiesel production
publisher Diponegoro University
series International Journal of Renewable Energy Development
issn 2252-4940
publishDate 2012-02-01
description roduction of biodiesel is currently shifting from the first to the second generation in which the raw materials are mostly from non-edible type oils and fats. Biodiesel production is commonly conducted under batch operation using mechanical agitation to accelerate mass transfers. The main drawback of oil esterification is the high content of free fatty acids (FFA) which may reduce the yield of biodiesel and prolong the production time (2-5 hours). Ultrasonification has been used in many applications such as component extraction due to its ability to produce cavitation under certain frequency. This research is aimed to facilitate ultrasound system for improving biodiesel production process particularly rubber seed oil. An ultrasound unit was used under constant temperature (40oC) and frequency of 40 Hz. The result showed that ultrasound can reduces the processing time and increases the biodiesel yield significantly. A model to describe correlation of yield and its independent variables is yield (Y) = 43,4894 – 0,6926 X1 + 1,1807 X2 – 7,1042 X3 + 2,6451 X1X2 – 1,6557 X1X3 + 5,7586 X2X3 - 10,5145 X1X2X3, where X1 is mesh sizes, X2 ratio oil: methanol and X3 type of catalyst.
topic Rubber seed oil
Ultrasound
Esterification
Biodiesel
Yield
url http://www.ijred.com/index.php/ijred/article/view/21/21
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