Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol

Ethanol production through ionic liquids pretreatment of palm empty bunch (PEB) was carried out. This research aims to investigate impact of ionic liquids synthetic i.e 1-butyl-3-methyl imidazoliumbromide or [BMIM]bromide toward cellulose’s palm empty bunch and convert its cellulose into bioethanol....

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Main Authors: Lucy Arianie, Utin Dewi Pebriyana, Yudiansyah Yudiansyah, Nora Idiawati, Deana Wahyuningrum
Format: Article
Language:English
Published: University of Brawijaya 2013-12-01
Series:Journal of Pure and Applied Chemistry Research
Subjects:
Online Access:http://www.jpacr.ub.ac.id/index.php/jpacr/article/view/165
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spelling doaj-f818e77404ac4789b75957ef15b5b2672020-11-24T21:27:25ZengUniversity of BrawijayaJournal of Pure and Applied Chemistry Research2302-46902013-12-01327682137Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce BioethanolLucy Arianie0Utin Dewi Pebriyana1Yudiansyah Yudiansyah2Nora Idiawati3Deana Wahyuningrum4Department of Chemistry Faculty of Mathematics and Natural Sciences Universitas TanjungpuraDepartment of Chemistry Faculty of Mathematics and Natural Science Universitas Tanjungpura Jl. A.Yani 73 Pontianak 78124Department of Chemistry Faculty of Mathematics and Natural Sciences, Institut Teknologi Bandung, Jl. Ganeca 10 Bandung 40132Department of Chemistry Faculty of Mathematics and Natural Science, Universitas Tanjungpura Jl. A.Yani 73 Pontianak 78124Department of Chemistry, Faculty of Mathematics and Natural Sciences, Institut Teknologi Bandung, Jl. Ganeca 10 Bandung 40132Ethanol production through ionic liquids pretreatment of palm empty bunch (PEB) was carried out. This research aims to investigate impact of ionic liquids synthetic i.e 1-butyl-3-methyl imidazoliumbromide or [BMIM]bromide toward cellulose’s palm empty bunch and convert its cellulose into bioethanol. Ionic liquid was synthesized  through reflux and microwave assisted synthesis methods. Research investigation showed that microwave assisted synthesis produce [BMIM]bromide 90% faster than reflux method. The characterization of synthesized product using FTIR, <sup>1</sup>H-NMR, <sup>13</sup>C-NMR and LC-MS showed that these reactions have been carried out successfully. Scanning electron microscope figure out changes morphological surface of palm empty bunch caused by ionic liquid pretreatment. Crystallinity index of PEB milled and cellulose of PEFB after [BMIM]bromide dissolution were identified using comparison of PEB FTIR spectrum. Cellulose without dilute [BMIM]bromide have higher LOI number than cellulose after [BMIM]bromide dissolution. It indicated that a large part of cellulose after dissolution has been changed into amorf. Hydrolysis residue of palm empty bunch hydrolyzed by sulfuric acids 5%, 100 <sup>0</sup>C for 5 hours and produce 685 ppm of reducing sugar. Simultaneous Saccharification and Fermentation using Trichoderma viride and Saccharomyce cerevisiae  for 5 days produce 0,69% of bioethanol.http://www.jpacr.ub.ac.id/index.php/jpacr/article/view/165applied chemistry
collection DOAJ
language English
format Article
sources DOAJ
author Lucy Arianie
Utin Dewi Pebriyana
Yudiansyah Yudiansyah
Nora Idiawati
Deana Wahyuningrum
spellingShingle Lucy Arianie
Utin Dewi Pebriyana
Yudiansyah Yudiansyah
Nora Idiawati
Deana Wahyuningrum
Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
Journal of Pure and Applied Chemistry Research
applied chemistry
author_facet Lucy Arianie
Utin Dewi Pebriyana
Yudiansyah Yudiansyah
Nora Idiawati
Deana Wahyuningrum
author_sort Lucy Arianie
title Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
title_short Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
title_full Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
title_fullStr Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
title_full_unstemmed Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
title_sort dilute ionic liquids pretreatment of palm empty bunch and its impact to produce bioethanol
publisher University of Brawijaya
series Journal of Pure and Applied Chemistry Research
issn 2302-4690
publishDate 2013-12-01
description Ethanol production through ionic liquids pretreatment of palm empty bunch (PEB) was carried out. This research aims to investigate impact of ionic liquids synthetic i.e 1-butyl-3-methyl imidazoliumbromide or [BMIM]bromide toward cellulose’s palm empty bunch and convert its cellulose into bioethanol. Ionic liquid was synthesized  through reflux and microwave assisted synthesis methods. Research investigation showed that microwave assisted synthesis produce [BMIM]bromide 90% faster than reflux method. The characterization of synthesized product using FTIR, <sup>1</sup>H-NMR, <sup>13</sup>C-NMR and LC-MS showed that these reactions have been carried out successfully. Scanning electron microscope figure out changes morphological surface of palm empty bunch caused by ionic liquid pretreatment. Crystallinity index of PEB milled and cellulose of PEFB after [BMIM]bromide dissolution were identified using comparison of PEB FTIR spectrum. Cellulose without dilute [BMIM]bromide have higher LOI number than cellulose after [BMIM]bromide dissolution. It indicated that a large part of cellulose after dissolution has been changed into amorf. Hydrolysis residue of palm empty bunch hydrolyzed by sulfuric acids 5%, 100 <sup>0</sup>C for 5 hours and produce 685 ppm of reducing sugar. Simultaneous Saccharification and Fermentation using Trichoderma viride and Saccharomyce cerevisiae  for 5 days produce 0,69% of bioethanol.
topic applied chemistry
url http://www.jpacr.ub.ac.id/index.php/jpacr/article/view/165
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AT utindewipebriyana diluteionicliquidspretreatmentofpalmemptybunchanditsimpacttoproducebioethanol
AT yudiansyahyudiansyah diluteionicliquidspretreatmentofpalmemptybunchanditsimpacttoproducebioethanol
AT noraidiawati diluteionicliquidspretreatmentofpalmemptybunchanditsimpacttoproducebioethanol
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