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◆ Bioresource technology2026-08-15

Ternary deep eutectic solvent fractionation of bamboo for bioethanol and pH-responsive lignin nanocarriers.

Yaoyao Jin, Zijing Xu, Haiyan Yang, Zhengjun Shi, Dawei Wang, Jingjie Shen, Jing Yang

原始摘要(英文原文)· Original abstract
Achieving efficient delignification while preserving the native structure of lignin remains a critical challenge for integrated bamboo biorefineries. In this study, a ternary deep eutectic solvent (DES) composed of (Benzyltriethylammonium chloride) TEBAC, ethylene glycol (EG), and p-toluenesulfonic acid (p-TsOH) was developed for bamboo fractionation. The optimized TEBAC/EG/p-TsOH system removed up to 97.94% of lignin and 85.99% of hemicellulose, while retaining 84.46% of cellulose. The pretreated bamboo showed significantly improved enzymatic saccharification, achieving a glucose yield of 78.98% and an ethanol yield of 73.16% following fermentation. The recovered lignin, characterized by a low molecular weight and well-preserved β-O-4 linkages, self-assembled into uniform lignin nanoparticles (LNPs) with approximately 318 nm. These LNPs efficiently encapsulated difenoconazole (Dif@LNP-140°C) with an encapsulation efficiency of 70.02%, exhibiting excellent photostability and pH-responsive release and full antifungal activity against Fusarium spp. Molecular dynamics simulations revealed that synergistic non-covalent interactions, particularly hydrogen bonding with G-units and π-π stacking with S-units, govern the stable encapsulation of the drug. This work presents a sustainable lignin-first strategy for integrated bamboo valorization, enabling the co-production of biofuels and lignin-based nanomaterials while maximizing resource efficiency.
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Ternary deep eutectic solvent fractionation of bamboo for bioethanol and pH-responsive lignin nanocarriers. — 科研速览 Science Skim