解聚
木质素
氢解
介孔材料
反应性(心理学)
单体
微型多孔材料
化学
键裂
沸石
水解
化学工程
有机化学
催化作用
加氢脱氧
劈理(地质)
聚合物
高分子化学
材料科学
生物净化
路易斯酸
双功能
作者
Xiangchen Kong,Leilei Bie,Chao Liu,Xing Wang,Wu Lan,Risheng Bai,Beichen Xue,Tao Li,Huiyan Zhang,Katalin Barta,Rui Xiao
标识
DOI:10.1038/s41467-026-70103-0
摘要
The depolymerization of condensed lignin-a byproduct of industrial pulping and biorefining-is crucial for sustainable biorefineries. However, it remains a formidable challenge due to the formation of recalcitrant C-C bonds during lignin isolation, restricting the reactivity and accessibility of the lignin macromolecule. Here, we demonstrate that a disordered crystalline mesoporous zeolite (Meso-Z) synergistically integrates strong acidity with enhanced mass transfer efficiency to process this bulk feedstock. Compared to conventional microporous zeolite, Meso-Z achieves 3.7-7.9 times higher yields (32.0-45.6 wt%) of aromatic monomers and dimers (MDs) from condensed lignin oligomers by C-C bond cleavage, thus enabling the total yields to exceed the theoretical maximum defined by C-O bond cleavage by 250-759%. Mechanistic studies reveal that this exceptional performance arises from Brønsted and Lewis acid-assisted hydrolysis and hydrogenolysis of Cα-Caryl bonds, facilitated by the zeolite's mesoporosity. Meso-Z also shows robust recyclability, maintaining stable catalytic activity over ten consecutive cycles. This work provides an efficient strategy for depolymerizing condensed lignin, paving the way for the valorization of industrial lignin streams.
科研通智能强力驱动
Strongly Powered by AbleSci AI