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Valorization of enzymatic hydrolysis lignin via PEG grafting to enhance hydrothermal pretreatment performance and saccharification efficiency of poplar sawdust.

Sep 2026 · Bioresource Technology · pp. 135931 · 0 citations · 67 references
Medicine

Abstract

Lignocellulosic biomass is inherently recalcitrant due to lignin's spatial obstruction and non-productive enzyme binding, which are the major barriers to economic biorefining. This work developed a valorization and reintegration process for lignin to convert enzymatic hydrolysis lignin (EHL) into PEG-grafted lignin material (PLM), then reused it in both hydrothermal pretreatment (HP) and enzymatic hydrolysis of poplar sawdust (PS). Characterization confirmed successful PEG grafting onto EHL, yielding a morphologically transformed product with improved surface physicochemical properties. Adding PLM (30 g/L) during HP boosted lignin removal (42.6 %) and hemicellulose solubilization (99.0 %), suppressed lignin repolymerization, and increased the relative content of β-O-4 bonds. As a result, cellulose accessibility increased 3.4-fold and surface hydrophobicity dropped by 66.1 %. In enzymatic hydrolysis, adding 0.8 g/L PLM protected the residual lignin from non-productive adsorption and preserved the enzyme activity, thereby attaining a hydrolysis efficiency of 80.1 %. Surface plasmon resonance analysis verified that PEGylation modulated lignin-cellulase interaction kinetics and reversibility, explaining the suppressed non-productive adsorption of the enzyme. This study validated a lignin valorization and reintegration strategy, which upgraded waste lignin into an effective process additive to simultaneously enhance sugar production efficiency and lignin resource utilization.

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