Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol

The high cost of Pt based catalyst for aqueous phase reforming (APR) reaction makes it advantageous to develop less cost of other metals for the same reaction. APR is hydrogen production process from biomass-derived source at mild condition near 500 K and firstly reported by Dumesic and co-worker. T...

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Main Authors: Kiky Corneliasari Sembiring, Anis Kristiani, Fauzan Aulia, Luthfiana Nurul Hidayati, Silvester Tursiloadi
Format: Article
Language:English
Published: Universitas Gadjah Mada 2015-11-01
Series:Indonesian Journal of Chemistry
Subjects:
Online Access:https://jurnal.ugm.ac.id/ijc/article/view/21195
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spelling doaj-5a7b5ecdc26d4941b09d71bc5c2495662020-11-25T00:45:52ZengUniversitas Gadjah MadaIndonesian Journal of Chemistry1411-94202460-15782015-11-0115326927310.22146/ijc.2119514293Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of GlycerolKiky Corneliasari Sembiring0Anis Kristiani1Fauzan Aulia2Luthfiana Nurul Hidayati3Silvester Tursiloadi4Research Center for Chemistry, Indonesian Institute of Science, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, BantenResearch Center for Chemistry, Indonesian Institute of Science, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, BantenResearch Center for Chemistry, Indonesian Institute of Science, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, BantenResearch Center for Chemistry, Indonesian Institute of Science, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, BantenResearch Center for Chemistry, Indonesian Institute of Science, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, BantenThe high cost of Pt based catalyst for aqueous phase reforming (APR) reaction makes it advantageous to develop less cost of other metals for the same reaction. APR is hydrogen production process from biomass-derived source at mild condition near 500 K and firstly reported by Dumesic and co-worker. The use of hydrogen as environmentally friendly energy carrier has been massively encouraged over the last year. When hydrogen is used in fuel cell for power generation, it produces a little or no pollutants. The aim of this study is to study the effect of some precious metal catalysts for APR process. Due to investigation of metal catalysts for APR process, four precious metals (Cu, Co, Zn, Ni) supported on γ-Al2O3 with 20% feeding amount have been successfully prepared by impregnation method. Those precious metals were identified as promising catalysts for APR. The catalysts were characterized by N2 physisorption at 77 K, X-Ray Diffraction (XRD) and Fourier Transform-Infra Red (FT-IR). The catalytic performance was investigated at 523 K and autogenous pressure in a batch reactor with glycerol concentration of 10%. The gaseous hydrogen product was observed over the prepared catalysts by GC. It was found that performance of catalysts to yield the hydrogen product was summarized as follow Cu/γ-Al2O3 > Co/γ-Al2O3 > Zn/γ-Al2O3 > Ni/γ-Al2O3.https://jurnal.ugm.ac.id/ijc/article/view/21195aqueous phase reformingγ-Al2O3hydrogenmetal catalyst
collection DOAJ
language English
format Article
sources DOAJ
author Kiky Corneliasari Sembiring
Anis Kristiani
Fauzan Aulia
Luthfiana Nurul Hidayati
Silvester Tursiloadi
spellingShingle Kiky Corneliasari Sembiring
Anis Kristiani
Fauzan Aulia
Luthfiana Nurul Hidayati
Silvester Tursiloadi
Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
Indonesian Journal of Chemistry
aqueous phase reforming
γ-Al2O3
hydrogen
metal catalyst
author_facet Kiky Corneliasari Sembiring
Anis Kristiani
Fauzan Aulia
Luthfiana Nurul Hidayati
Silvester Tursiloadi
author_sort Kiky Corneliasari Sembiring
title Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
title_short Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
title_full Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
title_fullStr Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
title_full_unstemmed Precious Metals Supported on Alumina and Their Application for Catalytic Aqueous Phase Reforming of Glycerol
title_sort precious metals supported on alumina and their application for catalytic aqueous phase reforming of glycerol
publisher Universitas Gadjah Mada
series Indonesian Journal of Chemistry
issn 1411-9420
2460-1578
publishDate 2015-11-01
description The high cost of Pt based catalyst for aqueous phase reforming (APR) reaction makes it advantageous to develop less cost of other metals for the same reaction. APR is hydrogen production process from biomass-derived source at mild condition near 500 K and firstly reported by Dumesic and co-worker. The use of hydrogen as environmentally friendly energy carrier has been massively encouraged over the last year. When hydrogen is used in fuel cell for power generation, it produces a little or no pollutants. The aim of this study is to study the effect of some precious metal catalysts for APR process. Due to investigation of metal catalysts for APR process, four precious metals (Cu, Co, Zn, Ni) supported on γ-Al2O3 with 20% feeding amount have been successfully prepared by impregnation method. Those precious metals were identified as promising catalysts for APR. The catalysts were characterized by N2 physisorption at 77 K, X-Ray Diffraction (XRD) and Fourier Transform-Infra Red (FT-IR). The catalytic performance was investigated at 523 K and autogenous pressure in a batch reactor with glycerol concentration of 10%. The gaseous hydrogen product was observed over the prepared catalysts by GC. It was found that performance of catalysts to yield the hydrogen product was summarized as follow Cu/γ-Al2O3 > Co/γ-Al2O3 > Zn/γ-Al2O3 > Ni/γ-Al2O3.
topic aqueous phase reforming
γ-Al2O3
hydrogen
metal catalyst
url https://jurnal.ugm.ac.id/ijc/article/view/21195
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