Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches

This study aimed to produce and improve the quality of pyrolysis oil as a source of bioenergy that is made by mixing palm empty fruit bunch (EFB) with high-density polyethylene (HDPE) plastic waste. The slow co-pyrolysis method was employed, and HDPE waste and EFB were fed into the pyrolysis rea...

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Main Authors: Eny Kusrini, Dijan Supramono, Volkan Degirmenci, Saeful Pranata, Aji Agraning Bawono, Farid Nasir Ani
Format: Article
Language:English
Published: Universitas Indonesia 2018-12-01
Series:International Journal of Technology
Subjects:
EFB
Online Access:http://ijtech.eng.ui.ac.id/article/view/2531
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spelling doaj-2251a16bed9343339aa5b81e0dd44e2c2020-11-25T00:21:14ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002018-12-01971498150810.14716/ijtech.v9i7.25312531Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit BunchesEny Kusrini0Dijan Supramono1Volkan Degirmenci2Saeful Pranata3Aji Agraning Bawono4Farid Nasir Ani5Department of Chemical Engineering, Faculty of Engineering Universitas Indonesia, Kampus UI Depok, 16424, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering Universitas Indonesia, Kampus UI Depok, 16424, IndonesiaSchool of Engineering, University of Warwick, Coventry, CV4 7AL, United KingdomDepartment of Chemical Engineering, Faculty of Engineering Universitas Indonesia, Kampus UI Depok, 16424, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering Universitas Indonesia, Kampus UI Depok, 16424, IndonesiaDepartment of Thermofluid, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310 Johor, MalaysiaThis study aimed to produce and improve the quality of pyrolysis oil as a source of bioenergy that is made by mixing palm empty fruit bunch (EFB) with high-density polyethylene (HDPE) plastic waste. The slow co-pyrolysis method was employed, and HDPE waste and EFB were fed into the pyrolysis reactor at HDPE amounts of 0, 10, 25, 50, 75, and 100% by weight. The pyrolysis oil product was obtained by co-firing EFB with HDPE using the slow co-pyrolysis method in a fixed bed reactor at 500°C with a flow rate of 750 mL/min and a heating rate of 5°C/min. The chemical compositions of pyrolysis oil were analyzed by gas chromatography-mass spectroscopy. A pyrolysis oil produced by HDPE 100 wt.% was dominated by the chemical compounds of phenols, aromatics, aliphatic, and acids, while for EFB 100 wt.% was dominated with aldehydes, acids, phenols, furan and aliphatic. The addition of HDPE reduced the amount of pyrolysis oil yield, increased the pH, reduced the viscosity, and reduced the oxygen content of the pyrolysis oil. These results proved that the HDPE affected the decrease in pyrolysis oil and the increase in gas production from co-firing HDPE and EFB using the slow co-pyrolysis method.http://ijtech.eng.ui.ac.id/article/view/2531BioenergyHDPEImproving the qualityEFBPyrolysis oilReduced the oxygen
collection DOAJ
language English
format Article
sources DOAJ
author Eny Kusrini
Dijan Supramono
Volkan Degirmenci
Saeful Pranata
Aji Agraning Bawono
Farid Nasir Ani
spellingShingle Eny Kusrini
Dijan Supramono
Volkan Degirmenci
Saeful Pranata
Aji Agraning Bawono
Farid Nasir Ani
Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
International Journal of Technology
Bioenergy
HDPE
Improving the quality
EFB
Pyrolysis oil
Reduced the oxygen
author_facet Eny Kusrini
Dijan Supramono
Volkan Degirmenci
Saeful Pranata
Aji Agraning Bawono
Farid Nasir Ani
author_sort Eny Kusrini
title Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
title_short Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
title_full Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
title_fullStr Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
title_full_unstemmed Improving the Quality of Pyrolysis Oil from Co-firing High-density Polyethylene Plastic Waste and Palm Empty Fruit Bunches
title_sort improving the quality of pyrolysis oil from co-firing high-density polyethylene plastic waste and palm empty fruit bunches
publisher Universitas Indonesia
series International Journal of Technology
issn 2086-9614
2087-2100
publishDate 2018-12-01
description This study aimed to produce and improve the quality of pyrolysis oil as a source of bioenergy that is made by mixing palm empty fruit bunch (EFB) with high-density polyethylene (HDPE) plastic waste. The slow co-pyrolysis method was employed, and HDPE waste and EFB were fed into the pyrolysis reactor at HDPE amounts of 0, 10, 25, 50, 75, and 100% by weight. The pyrolysis oil product was obtained by co-firing EFB with HDPE using the slow co-pyrolysis method in a fixed bed reactor at 500°C with a flow rate of 750 mL/min and a heating rate of 5°C/min. The chemical compositions of pyrolysis oil were analyzed by gas chromatography-mass spectroscopy. A pyrolysis oil produced by HDPE 100 wt.% was dominated by the chemical compounds of phenols, aromatics, aliphatic, and acids, while for EFB 100 wt.% was dominated with aldehydes, acids, phenols, furan and aliphatic. The addition of HDPE reduced the amount of pyrolysis oil yield, increased the pH, reduced the viscosity, and reduced the oxygen content of the pyrolysis oil. These results proved that the HDPE affected the decrease in pyrolysis oil and the increase in gas production from co-firing HDPE and EFB using the slow co-pyrolysis method.
topic Bioenergy
HDPE
Improving the quality
EFB
Pyrolysis oil
Reduced the oxygen
url http://ijtech.eng.ui.ac.id/article/view/2531
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