Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln

This study aims to investigate the effect of zeolite as a catalyst to enlarge biomass decomposition in the pyrolysis process. It absorbs a high water content in the biomass, besides it makes the easier breaking of biomass molecules to maximize the biomass decomposition into the expected pyrolysis pr...

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Main Author: Widya Wijayanti
Format: Article
Language:English
Published: University of Brawijaya 2021-05-01
Series:Rekayasa Mesin
Subjects:
tar
Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/693
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spelling doaj-9db91cd3eea240a280887336c20a6baf2021-05-31T15:00:24ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412021-05-01121515810.21776/ub.jrm.2021.012.01.6445Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary KilnWidya Wijayanti0Brawijaya UniversityThis study aims to investigate the effect of zeolite as a catalyst to enlarge biomass decomposition in the pyrolysis process. It absorbs a high water content in the biomass, besides it makes the easier breaking of biomass molecules to maximize the biomass decomposition into the expected pyrolysis products; tar and char. In addition, to decompose the biomass molecules, the zeolite also stimulates the rate of heat transfer due to its ability to hold and release the heat. If the previous research pyrolysis was conducted in a fixed bed reactor, in this study, it will be carried out rotary kiln as a pyrolysis furnace. If the fixed bed reactor the heat transfer was dominated by conduction, the heat transfer in the rotary kiln is more controlled by the convection and radiation transfer due to stirring and turning of biomass by the kiln. In the study, the biomass used was mahogany with an initial weight of 150 grams. The rotary kiln rotated at 10 rpm and the heating rate during the pyrolysis process was around 0.1483°C/s. The pyrolysis temperatures used were varied as 250°C, 350°C, 450°C. Meanwhile, the percentage of zeolites used from 0% to 60% with a mesh size of 80. The results showed that zeolites were able to increase tar production and maximize the reduction of char as an effect of the Bronsted-Lowry and Lewis reaction in the process of catalytic cracking. The maximum production of tar and char production was also supported by the process of convection and radiation from the rotary kiln wall increasing the rate of heat transfer to decompose the biomass.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/693zeolittarcharpirolisirotary kiln
collection DOAJ
language English
format Article
sources DOAJ
author Widya Wijayanti
spellingShingle Widya Wijayanti
Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
Rekayasa Mesin
zeolit
tar
char
pirolisi
rotary kiln
author_facet Widya Wijayanti
author_sort Widya Wijayanti
title Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
title_short Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
title_full Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
title_fullStr Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
title_full_unstemmed Efek Zeolit untuk Produksi Tar dan Char pada Pirolisis Rotary Kiln
title_sort efek zeolit untuk produksi tar dan char pada pirolisis rotary kiln
publisher University of Brawijaya
series Rekayasa Mesin
issn 2338-1663
2477-6041
publishDate 2021-05-01
description This study aims to investigate the effect of zeolite as a catalyst to enlarge biomass decomposition in the pyrolysis process. It absorbs a high water content in the biomass, besides it makes the easier breaking of biomass molecules to maximize the biomass decomposition into the expected pyrolysis products; tar and char. In addition, to decompose the biomass molecules, the zeolite also stimulates the rate of heat transfer due to its ability to hold and release the heat. If the previous research pyrolysis was conducted in a fixed bed reactor, in this study, it will be carried out rotary kiln as a pyrolysis furnace. If the fixed bed reactor the heat transfer was dominated by conduction, the heat transfer in the rotary kiln is more controlled by the convection and radiation transfer due to stirring and turning of biomass by the kiln. In the study, the biomass used was mahogany with an initial weight of 150 grams. The rotary kiln rotated at 10 rpm and the heating rate during the pyrolysis process was around 0.1483°C/s. The pyrolysis temperatures used were varied as 250°C, 350°C, 450°C. Meanwhile, the percentage of zeolites used from 0% to 60% with a mesh size of 80. The results showed that zeolites were able to increase tar production and maximize the reduction of char as an effect of the Bronsted-Lowry and Lewis reaction in the process of catalytic cracking. The maximum production of tar and char production was also supported by the process of convection and radiation from the rotary kiln wall increasing the rate of heat transfer to decompose the biomass.
topic zeolit
tar
char
pirolisi
rotary kiln
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/693
work_keys_str_mv AT widyawijayanti efekzeolituntukproduksitardancharpadapirolisisrotarykiln
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