Conversion of cellulose into aromatic compounds using supported metal catalysts in high-temperature water

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Abstract

Production of aromatic compounds from lignocellulosic biomass has recently been one goal of efforts to establish a sustainable society. We studied cellulose conversion into aromatic compounds over charcoal-supported metal catalysts (Pt/C, Pd/C, Rh/C, and Ru/C) in water at temperatures of 473-673 K. We found that charcoal-supported metal catalysts enhanced conversion of cellulose to aromatic compounds such as benzene, toluene, phenol, and cresol. The total yields of aromatic compounds produced from cellulose decreased in the order: Pt/C > Pd/C > Rh/C > no catalyst > Ru/C. This conversion could proceed even at 523 K. The total yield of aromatic compounds reached 5.8% with Pt/C at 673 K. The charcoal-supported metal catalysts also enhanced conversion of hemicellulose to aromatic compounds.

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Yamazaki, K., Segawa, A., Mazaki, H., Hiyoshi, N., Mimura, N., Sato, O., & Yamaguchi, A. (2023). Conversion of cellulose into aromatic compounds using supported metal catalysts in high-temperature water. RSC Advances, 13(20), 13472–13476. https://doi.org/10.1039/d3ra01939j

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