Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics

In this work, the iron-modified Ni-Co composite catalyst was synthesized, and its catalytic effect on product distribution, behaviour and liquid characteristics was deeply studied. The result showed that the synthesized catalyst significantly improved the pyrolysis behaviour of cellulose, and the de...

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Main Authors: Yong Jia, Jianqi Lei
Format: Article
Language:English
Published: SAGE Publishing 2023-09-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/01445987231164817
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author Yong Jia
Jianqi Lei
author_facet Yong Jia
Jianqi Lei
author_sort Yong Jia
collection DOAJ
description In this work, the iron-modified Ni-Co composite catalyst was synthesized, and its catalytic effect on product distribution, behaviour and liquid characteristics was deeply studied. The result showed that the synthesized catalyst significantly improved the pyrolysis behaviour of cellulose, and the decomposition of cellulose occurred earlier. The highest yield of liquid product was 56.79wt%, which was obtained by adding the NCF-6 catalyst. The optimal ratio of catalyst in the sample was 5%, and the optimal pyrolysis temperature was 530°C. The characteristics of liquid product showed the introduction of the synthesized catalyst enhanced the decomposition of anhydrosugars and significantly promoted the generation of ketones in the liquid. The highest content of ketones in the liquid was 25.12%. Further analysis showed that the selectivity of 2(5H)-Furanone in the liquid component was strongest. These works provided an effective way to produce ketone-rich bio-oil from biomass.
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spelling doaj.art-0f544dc7b5ea4971abfb5725892330a92023-09-04T15:03:57ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542023-09-014110.1177/01445987231164817Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil CharacteristicsYong Jia0Jianqi Lei1 Datang Suihua Thermal Power Co., Ltd, Suihua, P.R. China Datang Northeast Electric Power Test and Research Institute Co., Ltd, Changchun, P.R. ChinaIn this work, the iron-modified Ni-Co composite catalyst was synthesized, and its catalytic effect on product distribution, behaviour and liquid characteristics was deeply studied. The result showed that the synthesized catalyst significantly improved the pyrolysis behaviour of cellulose, and the decomposition of cellulose occurred earlier. The highest yield of liquid product was 56.79wt%, which was obtained by adding the NCF-6 catalyst. The optimal ratio of catalyst in the sample was 5%, and the optimal pyrolysis temperature was 530°C. The characteristics of liquid product showed the introduction of the synthesized catalyst enhanced the decomposition of anhydrosugars and significantly promoted the generation of ketones in the liquid. The highest content of ketones in the liquid was 25.12%. Further analysis showed that the selectivity of 2(5H)-Furanone in the liquid component was strongest. These works provided an effective way to produce ketone-rich bio-oil from biomass.https://doi.org/10.1177/01445987231164817
spellingShingle Yong Jia
Jianqi Lei
Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
Energy Exploration & Exploitation
title Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
title_full Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
title_fullStr Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
title_full_unstemmed Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
title_short Ketones Production by Catalytic Pyrolysis of Cellulose Using Iron-Modified Ni-Co Composite Catalyst: Products Distribution, Behaviour and Bio-oil Characteristics
title_sort ketones production by catalytic pyrolysis of cellulose using iron modified ni co composite catalyst products distribution behaviour and bio oil characteristics
url https://doi.org/10.1177/01445987231164817
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AT jianqilei ketonesproductionbycatalyticpyrolysisofcelluloseusingironmodifiednicocompositecatalystproductsdistributionbehaviourandbiooilcharacteristics