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CO2 utilization and fixation in biomass-derived furanics conversion: Thermochemical and electrochemical pathways

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Résumé fourni par la source

Carbon dioxide (CO 2 ) is the main greenhouse gas (GHG) released by human activities. The substitution of fossil resources by biomass as a bio-renewable resource, has significant potential to reduce GHG emissions. The approach to biomass, as the only true full-scale alternative to fossil resources, is progressing rapidly. Converting biomass into furanic compounds, as versatile platform chemicals for synthesizing a wide range of bio-based products is the cornerstone of sustainable technologies. The extensive body of this review combines the biomass valorization to furanic compounds by CO 2 utilization and furanic compounds conversion by CO 2 fixation. These processes can be strategically applied through both ‘thermochemical’ and ‘electrochemical’ pathways, by utilizing CO 2 from the atmosphere or industrial emission point and returning it to the natural carbon cycle. In the thermochemical pathway CO 2 acts as a carbon source (carboxylation and polymerization) or active reaction assistant in the biomass conversion (CO 2 -assisted conversion), without altering its oxidation state, facilitating the synthesis of valuable products and polymers. Conversely, in the electrochemical pathway, CO 2 can be used as a carbon source (electrocarboxylation) to give the corresponding carboxylic acid, or it can undergo reduction, yielding methanol, carbon monoxide (CO), formic acid, and analogous compounds, while on the other side, furanic compounds undergo oxidation yielding high-value-added chemicals. Finally, potential future research directions are suggested to promote CO 2 utilization and fixation in the valorization of biomass-derived furanic compounds, and challenges facing further research are highlighted. This review explores the dual role of CO 2 in the biomass valorization of furanic compounds and furanic compounds conversion. It highlights thermochemical and electrochemical routes for sustainable carbon fixation strategies, green chemical production, and future perspectives in CO 2 -assisted biomass upgrading. • Reducing GHG emissions by synergistic CO 2 utilization and biomass conversion. • CO 2 -assisted biomass valorization by thermochemical and electrochemical procedures. • CO 2 -assisted conversion, polymerization, and carboxylation, in thermochemical route. • CO 2 RR, furanic compounds oxidation, and electrocarboxylation in electrochemical route. • Importance and challenges of thermochemical and electrochemical pathways.

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
CO2 utilization and fixation in biomass-derived furanics conversion: Thermochemical and electrochemical pathways
Date Crossref
01/01/2026
Éditeur
Elsevier BV
Type
journal-article

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Institutions déclarées

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Sujets associés

Catalysis for Biomass ConversionCatalytic Processes in Materials ScienceCatalysis and Hydrodesulfurization Studies

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