HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST

The hydrogenation of furfural into furfuryl alcohol was catalyzed by porous nickel. Formic acid was used as a hydrogen source. Porous nickel was prepared in 2 steps, i.e., the synthesis of Ni-Al alloys and the removal of AI metal. Ni-Al alloy was prepared by 2 methods, namely hydrothermal and mecha...

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Main Author: Dzaky Mualim, Ahmad
Format: Theses
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/42517
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:42517
spelling id-itb.:425172019-09-20T10:40:00ZHYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST Dzaky Mualim, Ahmad Kimia Indonesia Theses Transfer hydrogenation, furfural, furfuryl alcohol, porous nickel. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/42517 The hydrogenation of furfural into furfuryl alcohol was catalyzed by porous nickel. Formic acid was used as a hydrogen source. Porous nickel was prepared in 2 steps, i.e., the synthesis of Ni-Al alloys and the removal of AI metal. Ni-Al alloy was prepared by 2 methods, namely hydrothermal and mechanical ball-milling. The hydrothermal method was carried out at 200 oc for 24 h using hydrazine as a reducing agent. The mechanical ball-milling was carried out with a planetary ball­ mill. The milling was done for 24 h, with a speed of 500 rpm and a powder ratio of 1:20 (75at% Ni) to the ball. The formation of Ni-Al metal alloys was confirmed using XRD. The XRD analysis results show the formation of NbAl species. Yet, Ni(O) metals were still predominantly present in the alloy. The removal of AI was carried out by reacting the alloy with NaOH. The process was carried out at 90 °C for 1 h to produce black solid. The solid was filtered and washed using H20 and ethanol. The porous Ni was dried under vacuum and the result were stored in a nitrogen atmosphere. These porous Ni were employed as a catalyst in the furfural hydrogenation. The catalytic reaction was carried out at 150 oc for 4 h in ethanol or formic acid in the absence of H2. Ethanol or formic acid worked as sources of hydrogen in the hydrogenation. The product was characterized using GC (FID) and 1H NMR. The furfural conversion and product selectivity to furfuryl alcohol was 77% and 66%, respectively when porous Ni prepared hydrothermally was used in the reaction. In contranst, the porous Ni prepared by mechanical milling showed no catalytic activity in this hydrogenation. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Kimia
spellingShingle Kimia
Dzaky Mualim, Ahmad
HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
description The hydrogenation of furfural into furfuryl alcohol was catalyzed by porous nickel. Formic acid was used as a hydrogen source. Porous nickel was prepared in 2 steps, i.e., the synthesis of Ni-Al alloys and the removal of AI metal. Ni-Al alloy was prepared by 2 methods, namely hydrothermal and mechanical ball-milling. The hydrothermal method was carried out at 200 oc for 24 h using hydrazine as a reducing agent. The mechanical ball-milling was carried out with a planetary ball­ mill. The milling was done for 24 h, with a speed of 500 rpm and a powder ratio of 1:20 (75at% Ni) to the ball. The formation of Ni-Al metal alloys was confirmed using XRD. The XRD analysis results show the formation of NbAl species. Yet, Ni(O) metals were still predominantly present in the alloy. The removal of AI was carried out by reacting the alloy with NaOH. The process was carried out at 90 °C for 1 h to produce black solid. The solid was filtered and washed using H20 and ethanol. The porous Ni was dried under vacuum and the result were stored in a nitrogen atmosphere. These porous Ni were employed as a catalyst in the furfural hydrogenation. The catalytic reaction was carried out at 150 oc for 4 h in ethanol or formic acid in the absence of H2. Ethanol or formic acid worked as sources of hydrogen in the hydrogenation. The product was characterized using GC (FID) and 1H NMR. The furfural conversion and product selectivity to furfuryl alcohol was 77% and 66%, respectively when porous Ni prepared hydrothermally was used in the reaction. In contranst, the porous Ni prepared by mechanical milling showed no catalytic activity in this hydrogenation.
format Theses
author Dzaky Mualim, Ahmad
author_facet Dzaky Mualim, Ahmad
author_sort Dzaky Mualim, Ahmad
title HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
title_short HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
title_full HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
title_fullStr HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
title_full_unstemmed HYDROGENATION OF FURFURAL TO FURFURYL ALCOHOL USING POROUS NICKEL CATALYST
title_sort hydrogenation of furfural to furfuryl alcohol using porous nickel catalyst
url https://digilib.itb.ac.id/gdl/view/42517
_version_ 1822926298540933120