Liquid‐Phase Catalytic Processing of Biomass‐Derived Oxygenated Hydrocarbons to Fuels and Chemicals
Жидкофазная каталитическая переработка кислородсодержащих углеводородов, полученных из биомассы, в топлива и химические продукты
2007-07-20
SCID: 54.1/f8k7ycmv
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aldol condensationaqueous-phase reformingbiomass-derived oxygenatescarbohydrate dehydrationliquid-phase catalysis
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Abstract (AI)
Biomass has the potential to serve as a sustainable source of energy and organic carbon for our industrialized society. The focus of this Review is to present an overview of chemical catalytic transformations of biomass-derived oxygenated feedstocks (primarily sugars and sugar-alcohols) in the liquid phase to value-added chemicals and fuels, with specific examples emphasizing the development of catalytic processes based on an understanding of the fundamental reaction chemistry. The key reactions involved in the processing of biomass are hydrolysis, dehydration, isomerization, aldol condensation, reforming, hydrogenation, and oxidation. Further, it is discussed how ideas based on fundamental chemical and catalytic concepts lead to strategies for the control of reaction pathways and process conditions to produce H(2)/CO(2) or H(2)/CO gas mixtures by aqueous-phase reforming, to produce furan compounds by selective dehydration of carbohydrates, and to produce liquid alkanes by the combination of aldol condensation and dehydration/hydrogenation processes.
Key Findings
1
Aqueous-phase reforming can convert oxygenated biomass feedstocks into H2/CO2 or H2/CO gas mixtures.
2
Fundamental reaction and catalytic concepts enable control of reaction pathways and conditions during biomass processing.
3
Key transformations include hydrolysis, dehydration, isomerization, aldol condensation, reforming, hydrogenation, and oxidation.
4
Selective carbohydrate dehydration produces furan compounds, while aldol condensation followed by dehydration/hydrogenation produces liquid alkanes.
5
The review examines liquid-phase catalytic conversion of biomass-derived sugars and sugar-alcohols into value-added chemicals and fuels.
Research Object
Biomass-derived oxygenated feedstocks (primarily sugars and sugar-alcohols) processed in the liquid phase
Research Subject
Catalytic reaction pathways and process strategies for converting these feedstocks into value-added chemicals, fuels, and H₂/CO₂ or H₂/CO gas mixtures
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2007-07-20
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