Aug 2026· Bioresource Technology· pp.
135714
· 0 citations· 64 references
Medicine
Abstract
Deep eutectic solvents (DESs) are widely applied in lignocellulosic biomass pretreatment for their green, reusable, and lignin-selective merits. However, lignin accumulation during DES cycling significantly increases solvent viscosity and reduces pretreatment efficiency, severely limiting its sustainable application. To address this bottleneck, we innovatively combined recycled lactic acid/zinc chloride (LA/ZnCl2) DES with acrylic acid (AA), leveraging the synergistic effect of lignin and metal ions to drive free radical polymerization. This strategy enables a simple and efficient preparation for lignin eutectic gels with excellent mechanical properties and low-temperature resistance. The optimized gels (with 3 wt% lignin) exhibited high tensile stress (1.2 MPa), elongation at break (580%), multi-surface adhesion (32 kPa), and maintained a stable electrical conductivity of 1.1 mS cm-1 even at -18 °C. At room temperature, the assembled flexible sensors possessed a fast response speed (160 ms), linear deformation response, and robust electrical stability (<5% signal decay over 700 cycles of 100% deformation). This study pioneered the coupling of DES pretreatment and eutectic gel preparation, facilitating full utilization of lignocellulose and DES components to advance DES-based lignocellulose fractionation, valorization, and the entire biorefinery industry.
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 de...
Yaoyao Jin, Zi-Dong Xu, Haiyan Yang et al.· Bioresource Technology· 1 citation
This study introduces a novel, rapid, and sustainable biorefinery approach for lignocellulosic biomass valorization, employing a natural deep eutectic solvent (NADES) system composed of betaine hydrochloride and lactic acid (15:85 w/w). Within just 4 min of microwave-assisted treatment, this green solvent system enab...
Lignocellulosic biomass is a key renewable resource for producing biofuels, biomaterials, and high-value chemicals, but its efficient utilization is hindered by the recalcitrant lignin-carbohydrate complex (LCC) network. Organosolv (OS) and deep eutectic solvent (DES) pretreatments have emerged as promising green strat...
Zi-Bin Wang, Jitong Hou, Lin Xiao et al.· Journal of Agricultural and...· 0 citations
To reduce chemical consumption in lignocellulosic biorefinery, we developed a densification pretreatment using Fenton’s reagent followed by autoclave treatment (DLCA(ft)). This method integrates mechanical densification with catalytic oxidation. It reduces chemical dosage to an ultra-low 0.0289 g/g biomass, far below...
Xin-Chuan Yuan, Shi-Zhong Yang, Guan-Nan Shen et al.· Journal of Agricultural and...· 0 citations
Deep eutectic solvents (DES) have emerged as promising green alternatives to ionic liquids for lignocellulosic biomass pretreatment, owing to their low cost, biodegradability, and tunable physicochemical properties. However, synergistic effects of DES composition and processing parameters on biomass fractionation remai...
Yue Chen, Lu Zhang, Jing Tong· Journal of Environmental Man...· 0 citations