Wu Zhen, Zhao Zihe, Wang Tao, Chen Sheng, Wang Yujie, Xu Yan, Xu Weisi, Liu Cong, Nawaz Haq, He Aiyong, Hu Lei
Jiangsu Key Laboratory for Biomass-based Energy and Enzyme Technology, Jiangsu Collaborative Innovation Center of Regional Modern Agriculture & Environmental Protection, School of Chemistry and Chemical Engineering, Huaiyin Normal University, Huai'an 223300, China.
Jiangsu Key Laboratory for Biomass-based Energy and Enzyme Technology, Jiangsu Collaborative Innovation Center of Regional Modern Agriculture & Environmental Protection, School of Chemistry and Chemical Engineering, Huaiyin Normal University, Huai'an 223300, China.
Int J Biol Macromol. 2025 Apr;300:140269. doi: 10.1016/j.ijbiomac.2025.140269. Epub 2025 Jan 23.
Catalytic depolymerization is a favorable option for the valorization of industrial lignin. In this study, a new strategy was demonstrated for the efficient reductive depolymerization of industrial lignin based on a complex solvent of choline chloride-lactic acid (ChCl-LA) DES integrated with ethanol and a C-supported N-doped niobium-based catalyst with industrial lignin as carbon source (NBC@N-LC). It was found that the introduction of ethanol significantly improved the conversion of industrial lignin in ChCl-LA. More delightfully, depolymerization of industrial lignin in the complex solvent of DES-ethanol was further promoted by using the fabricated NBC@N-LC, exhibiting the best lignin dissolution performance, the lowest undepolymerized lignin yield of 21.9 % and the highest monomers yield of 31.8 %. 4-Ethylphenol was observed to dominate the monomers with 53.6 % selectivity, revealing the directional reactivity of the catalytic depolymerization process. Reaction pathway analysis showed that the synergistic effect of NBC@N-LC and DES-ethanol led to the efficient depolymerization of lignin, in which DES acted as an excellent solvent for lignin and depolymerized intermediates, ethanol acted as an in-situ hydrogen donor, and NBC@N-LC acted as a provider of reaction sites and acid active centers. In conclusion, this work offers a good alternative compared to the available lignin depolymerization method in terms of efficiency, selectivity, and cost aspects.
催化解聚是工业木质素增值的一个有利选择。在本研究中,展示了一种基于氯化胆碱 - 乳酸(ChCl-LA)低共熔溶剂与乙醇集成以及以工业木质素为碳源的C负载N掺杂铌基催化剂(NBC@N-LC)的新型策略,用于工业木质素的高效还原解聚。研究发现,乙醇的引入显著提高了工业木质素在ChCl-LA中的转化率。更令人高兴的是,使用制备的NBC@N-LC进一步促进了工业木质素在DES-乙醇复合溶剂中的解聚,表现出最佳的木质素溶解性能,未解聚木质素产率最低为21.9%,单体产率最高为31.8%。观察到4-乙基苯酚以53.6%的选择性主导单体,揭示了催化解聚过程的定向反应性。反应途径分析表明,NBC@N-LC和DES-乙醇的协同作用导致了木质素的高效解聚,其中DES作为木质素和解聚中间体的优良溶剂,乙醇作为原位氢供体,NBC@N-LC作为反应位点和酸活性中心的提供者。总之,在效率、选择性和成本方面,这项工作与现有的木质素解聚方法相比提供了一个很好的数据。 (注:原文最后一句“offers a good alternative compared to the available lignin depolymerization method in terms of efficiency, selectivity, and cost aspects.”中“data”应为“alternative”,译文已修正)