Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts

Biomass-derived 5-hydroxymethylfurfural (5-HMF) is a potential raw material for the production of a wide range of valuable chemicals and biofuels. Industrial production of 5-HMF from hexoses on solid catalysts is promising nowadays. Acid zeolites have great potential in application as catalysts for...

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Datum:2022
Hauptverfasser: Patrylak, Lyubov K., Konovalov, Serhii V., Yakovenko, Angela V., Pertko, Oleksandra P., Povazhnyi, Volodymyr A., Melnychuk, Oleksandr V.
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Sprache:Englisch
Veröffentlicht: V.P. Kukhar Institute of Bioorganic Chemistry and Petrochemistry of the National Academy of Sciences of Ukraine 2022
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Online Zugang:https://kataliz.org.ua/index.php/journal/article/view/80
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Catalysis and petrochemistry
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author Patrylak, Lyubov K.
Konovalov, Serhii V.
Yakovenko, Angela V.
Pertko, Oleksandra P.
Povazhnyi, Volodymyr A.
Melnychuk, Oleksandr V.
author_facet Patrylak, Lyubov K.
Konovalov, Serhii V.
Yakovenko, Angela V.
Pertko, Oleksandra P.
Povazhnyi, Volodymyr A.
Melnychuk, Oleksandr V.
author_sort Patrylak, Lyubov K.
baseUrl_str
collection OJS
datestamp_date 2023-01-20T09:54:45Z
description Biomass-derived 5-hydroxymethylfurfural (5-HMF) is a potential raw material for the production of a wide range of valuable chemicals and biofuels. Industrial production of 5-HMF from hexoses on solid catalysts is promising nowadays. Acid zeolites have great potential in application as catalysts for the dehydration of sugars. The purpose of this work was to obtain granular zeolite catalysts with optimal acidity and evaluate their effectiveness depending on the nature of the binder used. A zeolite catalyst without binder and samples with 10 wt % of kaolin/alumina were prepared. Their porous characteristics and acidity were studied by means of nitrogen low temperature adsorption/desorption, ammonia thermo-programmed desorption, and pyridine adsorption with IR control. The activity and selectivity of the catalysts for 5-HMF synthesis from glucose in the dimethyl sulfoxide medium at 160 ◦C were studied. The high efficiency of granular samples in glucose transformation into 5-HMF is confirmed. They are not only not inferior to, but even superior to, powdered samples. The component sources of Brønsted and Lewis acidity of the ammonium form of zeolite, which demonstrates acceptable activity (selectivity for 5-HMF is 34 %) despite the small number of Lewis centers, are considered in detail. The highest efficiency is demonstrated by the sample with aluminum oxide, which not only does not significantly deteriorate the microporous characteristics but also improves the mesoporosity of the catalyst. The selectivity towards 5-HMF on it reaches 44%. However, the developed mesoporosity of the sample with aluminum oxide is not critical to its activity. The main influence on the effectiveness of the catalyst in the synthesis of 5-HMF is played by the presence of acid centers of medium strength.
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spelling oai:katalizorgua:article-802023-01-20T09:54:45Z Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts Patrylak, Lyubov K. Konovalov, Serhii V. Yakovenko, Angela V. Pertko, Oleksandra P. Povazhnyi, Volodymyr A. Melnychuk, Oleksandr V. zeolite, glucose conversion, 5-hydroxymehtylfurfural, binder цеоліти, конверсія глюкози, 5-гідроксиметилфурфурол, зв’язуюче Biomass-derived 5-hydroxymethylfurfural (5-HMF) is a potential raw material for the production of a wide range of valuable chemicals and biofuels. Industrial production of 5-HMF from hexoses on solid catalysts is promising nowadays. Acid zeolites have great potential in application as catalysts for the dehydration of sugars. The purpose of this work was to obtain granular zeolite catalysts with optimal acidity and evaluate their effectiveness depending on the nature of the binder used. A zeolite catalyst without binder and samples with 10 wt % of kaolin/alumina were prepared. Their porous characteristics and acidity were studied by means of nitrogen low temperature adsorption/desorption, ammonia thermo-programmed desorption, and pyridine adsorption with IR control. The activity and selectivity of the catalysts for 5-HMF synthesis from glucose in the dimethyl sulfoxide medium at 160 ◦C were studied. The high efficiency of granular samples in glucose transformation into 5-HMF is confirmed. They are not only not inferior to, but even superior to, powdered samples. The component sources of Brønsted and Lewis acidity of the ammonium form of zeolite, which demonstrates acceptable activity (selectivity for 5-HMF is 34 %) despite the small number of Lewis centers, are considered in detail. The highest efficiency is demonstrated by the sample with aluminum oxide, which not only does not significantly deteriorate the microporous characteristics but also improves the mesoporosity of the catalyst. The selectivity towards 5-HMF on it reaches 44%. However, the developed mesoporosity of the sample with aluminum oxide is not critical to its activity. The main influence on the effectiveness of the catalyst in the synthesis of 5-HMF is played by the presence of acid centers of medium strength. Biomass-derived 5-hydroxymethylfurfural (5-HMF) is a potential raw material for the production of a wide range of valuable chemicals and biofuels. Industrial production of 5-HMF from hexoses on solid catalysts is promising nowadays. Acid zeolites have great potential in application as catalysts for the dehydration of sugars. The purpose of this work was to obtain granular zeolite catalysts with optimal acidity and evaluate their effectiveness depending on the nature of the binder used. A zeolite catalyst without binder and samples with 10 wt % of kaolin/alumina were prepared. Their porous characteristics and acidity were studied by means of nitrogen low temperature adsorption/desorption, ammonia thermo-programmed desorption, and pyridine adsorption with IR control. The activity and selectivity of the catalysts for 5-HMF synthesis from glucose in the dimethyl sulfoxide medium at 160 ◦C were studied. The high efficiency of granular samples in glucose transformation into 5-HMF is confirmed. They are not only not inferior to, but even superior to, powdered samples. The component sources of Brønsted and Lewis acidity of the ammonium form of zeolite, which demonstrates acceptable activity (selectivity for 5-HMF is 34 %) despite the small number of Lewis centers, are considered in detail. The highest efficiency is demonstrated by the sample with aluminum oxide, which not only does not significantly deteriorate the microporous characteristics but also improves the mesoporosity of the catalyst. The selectivity towards 5-HMF on it reaches 44%. However, the developed mesoporosity of the sample with aluminum oxide is not critical to its activity. The main influence on the effectiveness of the catalyst in the synthesis of 5-HMF is played by the presence of acid centers of medium strength. V.P. Kukhar Institute of Bioorganic Chemistry and Petrochemistry of the National Academy of Sciences of Ukraine 2022-10-26 Article Article application/pdf https://kataliz.org.ua/index.php/journal/article/view/80 10.15407/kataliz2022.33.038 Catalysis and petrochemistry; No. 33 (2022): Catalysis and petrochemistry; 38-45 Каталіз та нафтохімія; № 33 (2022): Каталіз та нафтохімія; 38-45 2707-5796 2412-4176 10.15407/kataliz2022.33 en https://kataliz.org.ua/index.php/journal/article/view/80/73 Copyright (c) 2022 Catalysis and petrochemistry
spellingShingle цеоліти
конверсія глюкози
5-гідроксиметилфурфурол
зв’язуюче
Patrylak, Lyubov K.
Konovalov, Serhii V.
Yakovenko, Angela V.
Pertko, Oleksandra P.
Povazhnyi, Volodymyr A.
Melnychuk, Oleksandr V.
Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_alt Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_full Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_fullStr Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_full_unstemmed Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_short Conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
title_sort conversion of glucose into 5-hydroxymethylfurfural on granular zeolite catalysts
topic цеоліти
конверсія глюкози
5-гідроксиметилфурфурол
зв’язуюче
topic_facet zeolite
glucose conversion
5-hydroxymehtylfurfural
binder
цеоліти
конверсія глюкози
5-гідроксиметилфурфурол
зв’язуюче
url https://kataliz.org.ua/index.php/journal/article/view/80
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