Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis

This study indentified the tar yield of pyrolysis of mahogany wood. The produced tar would be analyzed using GC-MS (Gas Chromatograph-Mass Spectrometry) to understand their chemical properties affected by temperature pyrolysis. It would be identified if the elements are flammable matters or not. It...

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Main Author: Widya Wijayanti
Format: Article
Language:English
Published: University of Brawijaya 2019-01-01
Series:Rekayasa Mesin
Subjects:
Tar
Online Access:http://rekayasamesin.ub.ac.id/index.php/rm/article/view/448
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spelling doaj-f0ee3e98429e4eda925d9df3e8d2d4702020-11-24T23:57:18ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412019-01-019318319010.21776/ub.jrm.2018.009.03.5335Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur PirolisisWidya Wijayanti0Brawijaya UniversityThis study indentified the tar yield of pyrolysis of mahogany wood. The produced tar would be analyzed using GC-MS (Gas Chromatograph-Mass Spectrometry) to understand their chemical properties affected by temperature pyrolysis. It would be identified if the elements are flammable matters or not. It is due to the fact that the yields of pyrolysis desire the flammable matters as much as possible as a biofuel. The experiment was conducted at a fixed bed reactor. The needle particle of mahogany wood was used as the pyrolysis feedstock having weight of 200 gram, sizing of mesh 20 hm, and containing 2% moisture content. The variations of pyrolysis temperature influencing the mahogany wood decompositions are 250°C, 350°C, 450°C, 500°C , 600°C, 700°C and 800°C. The pyrolysis was carried out during 3 hours almost without Oxygen. The result of tar yields show that a getting higher of the pyrolysis temperature caused the volume and mass of tar formed by condensation in cold trap would increase up to 500°C and then decrease. The increasing of tar yields would also increase some acetic acid compounds and reach a peak at 350°C in which the acetic acid compound is a flammable substance. From the GC-MS results, it was also presented that at any pyrolysis temperatures, the amount of the flammable tar compounds were higher than the unflammable one. It can be interpreted that the tar yield is very potential as liquid fuel (bio-oil) because the main elements of tar is acetic acid having flash point (flash point) equal to 39°C.http://rekayasamesin.ub.ac.id/index.php/rm/article/view/448Chemical CompositionTarSwietenia MahagoniBiofuelTemperature
collection DOAJ
language English
format Article
sources DOAJ
author Widya Wijayanti
spellingShingle Widya Wijayanti
Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
Rekayasa Mesin
Chemical Composition
Tar
Swietenia Mahagoni
Biofuel
Temperature
author_facet Widya Wijayanti
author_sort Widya Wijayanti
title Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
title_short Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
title_full Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
title_fullStr Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
title_full_unstemmed Identifikasi Komposisi Kimia Tar Kayu Mahoni untuk Biofuel pada Berbagai Temperatur Pirolisis
title_sort identifikasi komposisi kimia tar kayu mahoni untuk biofuel pada berbagai temperatur pirolisis
publisher University of Brawijaya
series Rekayasa Mesin
issn 2338-1663
2477-6041
publishDate 2019-01-01
description This study indentified the tar yield of pyrolysis of mahogany wood. The produced tar would be analyzed using GC-MS (Gas Chromatograph-Mass Spectrometry) to understand their chemical properties affected by temperature pyrolysis. It would be identified if the elements are flammable matters or not. It is due to the fact that the yields of pyrolysis desire the flammable matters as much as possible as a biofuel. The experiment was conducted at a fixed bed reactor. The needle particle of mahogany wood was used as the pyrolysis feedstock having weight of 200 gram, sizing of mesh 20 hm, and containing 2% moisture content. The variations of pyrolysis temperature influencing the mahogany wood decompositions are 250°C, 350°C, 450°C, 500°C , 600°C, 700°C and 800°C. The pyrolysis was carried out during 3 hours almost without Oxygen. The result of tar yields show that a getting higher of the pyrolysis temperature caused the volume and mass of tar formed by condensation in cold trap would increase up to 500°C and then decrease. The increasing of tar yields would also increase some acetic acid compounds and reach a peak at 350°C in which the acetic acid compound is a flammable substance. From the GC-MS results, it was also presented that at any pyrolysis temperatures, the amount of the flammable tar compounds were higher than the unflammable one. It can be interpreted that the tar yield is very potential as liquid fuel (bio-oil) because the main elements of tar is acetic acid having flash point (flash point) equal to 39°C.
topic Chemical Composition
Tar
Swietenia Mahagoni
Biofuel
Temperature
url http://rekayasamesin.ub.ac.id/index.php/rm/article/view/448
work_keys_str_mv AT widyawijayanti identifikasikomposisikimiatarkayumahoniuntukbiofuelpadaberbagaitemperaturpirolisis
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