PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL

Nitration of biodiesel from Jatropha curcas oil using mixture of HNO3 and H2SO4 had been done in an attempt to obtain a cetane improver or cetane number enhancer. The nitration was carried out by varying the numbers of moles of sulphuric acid, nitric acid, temperature and time. The process was condu...

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Main Authors: Abdullah Abdullah, D.R. Wicakso, A.B. Junaidi, Badruzsaufari Badruzsaufari
Format: Article
Language:English
Published: Universitas Gadjah Mada 2010-12-01
Series:Indonesian Journal of Chemistry
Online Access:https://jurnal.ugm.ac.id/ijc/article/view/21449
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spelling doaj-d218d47a0b484ec5bb6dc4bb6f4d4d872020-11-25T00:42:01ZengUniversitas Gadjah MadaIndonesian Journal of Chemistry1411-94202460-15782010-12-0110339640010.22146/ijc.2144914547PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OILAbdullah Abdullah0D.R. Wicakso1A.B. Junaidi2Badruzsaufari Badruzsaufari3Department of Chemistry, Lambung Mangkurat University, Jl. A. Yani Km 36 Banjarbaru, South of KalimantanDepartment of Technical Chemistry, Lambung Mangkurat University, Jl. A. Yani Km 35.8 Banjarbaru. South of KalimantanDepartment of Chemistry, Lambung Mangkurat University, Jl. A. Yani Km 36 Banjarbaru, South of KalimantanDepartment of Biology, Lambung Mangkurat University, Jl. A. Yani Km 35.8 Banjarbaru. South of KalimantanNitration of biodiesel from Jatropha curcas oil using mixture of HNO3 and H2SO4 had been done in an attempt to obtain a cetane improver or cetane number enhancer. The nitration was carried out by varying the numbers of moles of sulphuric acid, nitric acid, temperature and time. The process was conducted in a round bottom flask reactor that equipped with a magnetic stirrer and a ball cooler on a water batch. The mixture of H2SO4 and HNO3 was placed in the reactor and subsequently added slowly with biodiesel drop by drop. The results showed that increasing the mole numbers of sulphuric acid tends to reduce the yield or volume and total N of nitrated biodiesel. Increasing the number of moles of nitric acid tends to increase the yield, but decrease the value of total N. While increasing of temperature and reaction time tends to reduce the yield and total N. From FTIR spectra product was estimated as a mixture of esters of alkyl nitrates and nitro. From the testing of cetane number it can be predicted that nitrated biodiesel potentially as cetane improver.https://jurnal.ugm.ac.id/ijc/article/view/21449
collection DOAJ
language English
format Article
sources DOAJ
author Abdullah Abdullah
D.R. Wicakso
A.B. Junaidi
Badruzsaufari Badruzsaufari
spellingShingle Abdullah Abdullah
D.R. Wicakso
A.B. Junaidi
Badruzsaufari Badruzsaufari
PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
Indonesian Journal of Chemistry
author_facet Abdullah Abdullah
D.R. Wicakso
A.B. Junaidi
Badruzsaufari Badruzsaufari
author_sort Abdullah Abdullah
title PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
title_short PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
title_full PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
title_fullStr PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
title_full_unstemmed PRODUCTION OF CETANE IMPROVER FROM <i>Jathropa curcas</i> OIL
title_sort production of cetane improver from <i>jathropa curcas</i> oil
publisher Universitas Gadjah Mada
series Indonesian Journal of Chemistry
issn 1411-9420
2460-1578
publishDate 2010-12-01
description Nitration of biodiesel from Jatropha curcas oil using mixture of HNO3 and H2SO4 had been done in an attempt to obtain a cetane improver or cetane number enhancer. The nitration was carried out by varying the numbers of moles of sulphuric acid, nitric acid, temperature and time. The process was conducted in a round bottom flask reactor that equipped with a magnetic stirrer and a ball cooler on a water batch. The mixture of H2SO4 and HNO3 was placed in the reactor and subsequently added slowly with biodiesel drop by drop. The results showed that increasing the mole numbers of sulphuric acid tends to reduce the yield or volume and total N of nitrated biodiesel. Increasing the number of moles of nitric acid tends to increase the yield, but decrease the value of total N. While increasing of temperature and reaction time tends to reduce the yield and total N. From FTIR spectra product was estimated as a mixture of esters of alkyl nitrates and nitro. From the testing of cetane number it can be predicted that nitrated biodiesel potentially as cetane improver.
url https://jurnal.ugm.ac.id/ijc/article/view/21449
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