Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor
Research of energy efficiency for biodiesel production process by combining two orifices on hydrodynamic cavitation reactor had been carried out. The aim of this reseach was to studied effect of the number of orifices toward increasing temperature without using external energy source to produce bio...
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Balai Riset dan Standardisasi Industri Pontianak
2014-12-01
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Online Access: | http://ejournal.kemenperin.go.id/biopropal/article/view/826 |
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doaj-07622c6b615a45dd8a79f57280dc58b62020-11-24T21:11:29ZindBalai Riset dan Standardisasi Industri PontianakBiopropal Industri2089-08772502-29622014-12-0152743Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation ReactorMahlinda Mahlinda0Fitriana Djafar1Balai Riset dan Standardisasi Industri Banda Aceh, Jl. Cut Nyak Dhien No. 377, Lamteumen Timur, Banda AcehBalai Riset dan Standardisasi Industri Banda Aceh, Jl. Cut Nyak Dhien No. 377, Lamteumen Timur, Banda AcehResearch of energy efficiency for biodiesel production process by combining two orifices on hydrodynamic cavitation reactor had been carried out. The aim of this reseach was to studied effect of the number of orifices toward increasing temperature without using external energy source to produce biodiesel that generated by cavitation effects on orifices. The results of preliminary research showed by combining two orifices arranged in series can produce the highest thermal energy reached 48<sup>o</sup>C. Result of biodiesel production showed that yield of the highest biodiesel was 96.34% using molar ratio a methanol:oil with comparison 6:1, KOH as catalyst (1%) for 50 minutes processing time. For biodiesel quality testing showed all selected parameter met the requirements of the Indonesian National Standard (SNI) 04-7182:2006. Identification of biodiesel compound using GCMS showed the biodiesel compounds consisted of methyl oleate, methyl palmitate, acid linoleid, methyl stearate, palmitic acid and oleic acid with the total contents 98.39%.http://ejournal.kemenperin.go.id/biopropal/article/view/826biodieselenergyhydrodynamic cavitationorifice |
collection |
DOAJ |
language |
Indonesian |
format |
Article |
sources |
DOAJ |
author |
Mahlinda Mahlinda Fitriana Djafar |
spellingShingle |
Mahlinda Mahlinda Fitriana Djafar Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor Biopropal Industri biodiesel energy hydrodynamic cavitation orifice |
author_facet |
Mahlinda Mahlinda Fitriana Djafar |
author_sort |
Mahlinda Mahlinda |
title |
Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor |
title_short |
Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor |
title_full |
Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor |
title_fullStr |
Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor |
title_full_unstemmed |
Energy Efficiency for Biodiesel Production by Combining Two Orifices in Hydrodynamic Cavitation Reactor |
title_sort |
energy efficiency for biodiesel production by combining two orifices in hydrodynamic cavitation reactor |
publisher |
Balai Riset dan Standardisasi Industri Pontianak |
series |
Biopropal Industri |
issn |
2089-0877 2502-2962 |
publishDate |
2014-12-01 |
description |
Research of energy efficiency for biodiesel production process by combining two orifices on hydrodynamic cavitation reactor had been carried out. The aim of this reseach was to studied effect of the number of orifices toward increasing temperature without using external energy source to produce biodiesel that generated by cavitation effects on orifices. The results of preliminary research showed by combining two orifices arranged in series can produce the highest thermal energy reached 48<sup>o</sup>C. Result of biodiesel production showed that yield of the highest biodiesel was 96.34% using molar ratio a methanol:oil with comparison 6:1, KOH as catalyst (1%) for 50 minutes processing time. For biodiesel quality testing showed all selected parameter met the requirements of the Indonesian National Standard (SNI) 04-7182:2006. Identification of biodiesel compound using GCMS showed the biodiesel compounds consisted of methyl oleate, methyl palmitate, acid linoleid, methyl stearate, palmitic acid and oleic acid with the total contents 98.39%. |
topic |
biodiesel energy hydrodynamic cavitation orifice |
url |
http://ejournal.kemenperin.go.id/biopropal/article/view/826 |
work_keys_str_mv |
AT mahlindamahlinda energyefficiencyforbiodieselproductionbycombiningtwoorificesinhydrodynamiccavitationreactor AT fitrianadjafar energyefficiencyforbiodieselproductionbycombiningtwoorificesinhydrodynamiccavitationreactor |
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