Liu Hui-Jun, Sun Da-Yu, Yang Lei, Ma Guang-Hui, Xia Rong-Ying, Wang Zi-Qi, Yao Ming-Zhu, Gao Li-Jing, Wei Rui-Ping, Pan Xiao-Mei, Xiao Guo-Min
School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.
School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.
Int J Biol Macromol. 2025 Apr;301:140452. doi: 10.1016/j.ijbiomac.2025.140452. Epub 2025 Jan 28.
The pretreatment with green deep eutectic solvents (DESs) is conducive to realizing the high-efficiency utilization of lignin at a low cost. In this study, an innovative choline chloride/urea/calcium hydroxide (ChCl/UR/Ca(OH)) DES containing a reversibly-soluble base Ca(OH) was developed for the pretreatment of enzymatic hydrolysis lignin (EHL). The lignin pretreatment effects of the proposed ChCl/UR/Ca(OH) DES were compare with a series of DESs. The results indicated that ChCl/UR/20 % Ca(OH) with a reversibly-soluble base addition of 20 % was permitted to achieve the optimal recovery yield of 81.067 % under mild conditions (80 °C, 7 h). The physical and chemical structure, molecular weight, thermal stability, content of phenolic hydroxyl and carboxyl groups, and recycling performance of DES were compared between ChCl/UR-L and ChCl/UR/20 % Ca(OH)-L. The results showed that ChCl/UR/20 % Ca(OH)-L retained the lignin skeleton structure and possessed preferable thermal stability and antioxidant activity, which was mainly attributed to the homogeneous molecular structure and abundant phenolic hydroxyl group contents. ChCl/UR/20 % Ca(OH) was more advantageous for recycling, maintaining a lignin recovery yield of 57.400 % after 5 cycles, which was higher than that of most acidic and neutral DESs for regenerating lignin. This work provides a valuable reference on the valorization of lignin by using renewable DES.
用绿色低共熔溶剂(DESs)进行预处理有助于低成本实现木质素的高效利用。在本研究中,开发了一种含有可逆溶性碱Ca(OH)₂的新型氯化胆碱/尿素/氢氧化钙(ChCl/UR/Ca(OH)₂)DES用于酶解木质素(EHL)的预处理。将所提出的ChCl/UR/Ca(OH)₂ DES对木质素的预处理效果与一系列DESs进行了比较。结果表明,在温和条件(80℃,7h)下,添加20%可逆溶性碱的ChCl/UR/20%Ca(OH)₂能够实现81.067%的最佳回收率。比较了ChCl/UR-L和ChCl/UR/20%Ca(OH)₂-L之间DES的物理化学结构、分子量、热稳定性、酚羟基和羧基含量以及循环性能。结果表明,ChCl/UR/20%Ca(OH)₂-L保留了木质素骨架结构,具有较好的热稳定性和抗氧化活性,这主要归因于其均匀的分子结构和丰富的酚羟基含量。ChCl/UR/20%Ca(OH)₂在循环利用方面更具优势,5次循环后木质素回收率保持在57.400%,高于大多数用于再生木质素的酸性和中性DESs。这项工作为利用可再生DES对木质素进行增值利用提供了有价值的参考。