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Updated: Jan 10, 2026

Towards Biomimicking Wood: Fabricated Free-standing Films of Nanocellulose, Lignin, and a Synthetic Polycation
Published on: June 17, 2014
Pyrolysis-assisted catalytic hydrogenolysis of lignin in Japanese cedar: Roles of polysaccharides and cell wall
Jiaqi Wang1, Alex Ikeda Francisco2, Eiji Minami2
1Department of Socio-Environmental Energy Science, Graduate School of Energy Science, Kyoto University, Yoshida-honmachi, Sakyo-ku, Kyoto 606-8501, Japan; Department of Biomaterial Sciences, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
Abstract:
Pyrolysis-assisted catalytic hydrogenolysis of milled wood lignin (MWL), MWL-holocellulose blends, and Japanese cedar wood (250-350 °C) was conducted to investigate the roles of polysaccharides and cell wall ultrastructure in aromatic monomer production. β-Ether bonds in lignin were thermally cleaved during pyrolysis, forming coniferyl alcohol (CA), which was then hydrogenated to dihydroconiferyl alcohol (DHCA). Holocellulose addition suppressed catalytic deformylation, demethoxylation, and oligomer-to-monomer conversion. In Japanese cedar wood, recondensation of lignin-derived products occurred within the intact cell wall. Model studies using levoglucosan (LG) showed that polysaccharide-derived compounds inhibited catalytic cleavage of 4-O-5 and α-aryl linkages by competing for Pd/C active sites. Under inert N2, polysaccharides acted as a hydrogen source, promoting side-chain saturation as well as CC and 4-O-5 bond cleavage. These findings reveal the dual roles of polysaccharides in the catalytic lignin transformation in the cell wall and offer insights for efficient lignocellulosic biorefineries.
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