Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol

The disadvantages of conventional biodiesel synthesis trigger the birth of new biodiesel synthesis methods using the DBD plasma reactor. The conventional methods with homogeneous and heterogeneous catalysts have significant constraints that the formation of glycerol compounds in large enough quantit...

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Main Authors: Ramadhani Sari Dafinah, Fakhri Saphira Nurina, Bismo Setijo
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20186702010
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spelling doaj-08ec728f29414336b349529a68de8b012021-02-02T07:06:32ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01670201010.1051/e3sconf/20186702010e3sconf_i-trec2018_02010Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanolRamadhani Sari DafinahFakhri Saphira NurinaBismo SetijoThe disadvantages of conventional biodiesel synthesis trigger the birth of new biodiesel synthesis methods using the DBD plasma reactor. The conventional methods with homogeneous and heterogeneous catalysts have significant constraints that the formation of glycerol compounds in large enough quantities that require considerable energy. The aim of present experiment is to design DBD non-thermal plasma reactor coaxial pipe type and to do its performance test in converting biodiesel The feed stock used are palm oil, ethanol, and argon gas as plasma carrier. Such a chemical reactor, this plasma reactor is also influenced by reaction kinetics and hydrodynamic factors. From this research, it can be seen that the optimum feed and gas flowrate being operated is 1.64 and 41.67 mL/s. The plasma reactor is used in the form of a quartz glass tube surrounded by a SS-314 spiral coil as an outer electrode. The applied operating conditions are 1 : 1 molar ratio of methanol/oil, ambient temperature of 28 - 30 °C, and pressure 1 bar. From this performance test, it is found that this plasma reactor can be used to synthesize biodiesel from palm oil and methanol without catalyst, no formation of soap, and minimal byproducts.https://doi.org/10.1051/e3sconf/20186702010
collection DOAJ
language English
format Article
sources DOAJ
author Ramadhani Sari Dafinah
Fakhri Saphira Nurina
Bismo Setijo
spellingShingle Ramadhani Sari Dafinah
Fakhri Saphira Nurina
Bismo Setijo
Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
E3S Web of Conferences
author_facet Ramadhani Sari Dafinah
Fakhri Saphira Nurina
Bismo Setijo
author_sort Ramadhani Sari Dafinah
title Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
title_short Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
title_full Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
title_fullStr Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
title_full_unstemmed Performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
title_sort performance of novel dielectric barrier discharge reactor for biodiesel production from palm oil and ethanol
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description The disadvantages of conventional biodiesel synthesis trigger the birth of new biodiesel synthesis methods using the DBD plasma reactor. The conventional methods with homogeneous and heterogeneous catalysts have significant constraints that the formation of glycerol compounds in large enough quantities that require considerable energy. The aim of present experiment is to design DBD non-thermal plasma reactor coaxial pipe type and to do its performance test in converting biodiesel The feed stock used are palm oil, ethanol, and argon gas as plasma carrier. Such a chemical reactor, this plasma reactor is also influenced by reaction kinetics and hydrodynamic factors. From this research, it can be seen that the optimum feed and gas flowrate being operated is 1.64 and 41.67 mL/s. The plasma reactor is used in the form of a quartz glass tube surrounded by a SS-314 spiral coil as an outer electrode. The applied operating conditions are 1 : 1 molar ratio of methanol/oil, ambient temperature of 28 - 30 °C, and pressure 1 bar. From this performance test, it is found that this plasma reactor can be used to synthesize biodiesel from palm oil and methanol without catalyst, no formation of soap, and minimal byproducts.
url https://doi.org/10.1051/e3sconf/20186702010
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AT fakhrisaphiranurina performanceofnoveldielectricbarrierdischargereactorforbiodieselproductionfrompalmoilandethanol
AT bismosetijo performanceofnoveldielectricbarrierdischargereactorforbiodieselproductionfrompalmoilandethanol
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