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One-pot generation of lignin microspheres and digestible substrate with a polyol-DES pretreatment in high solid loading

木质素 生物炼制 酶水解 纤维素 生物净化 分馏 水解 竹子 化学 材料科学 化学工程 生物量(生态学) 结晶度 制浆造纸工业 有机化学 原材料 农学 复合材料 工程类 生物 结晶学
作者
Jinyuan Cheng,Yunni Zhan,Xuze Liu,Chen Huang,Xuelian Zhou,Jia Wang,Xianzhi Meng,Chang Geun Yoo,Guigan Fang,Arthur J. Ragauskas
出处
期刊:Journal of Cleaner Production [Elsevier]
卷期号:394: 136322-136322 被引量:15
标识
DOI:10.1016/j.jclepro.2023.136322
摘要

Previous lignin microspheres (LMS) preparation needs multiple steps with very low yield and high cost. Herein, we developed a high-solid deep eutectic solvent (DES) pretreatment for an effective lignin fractionation and enzymatic saccharification of moso bamboo under mild temperature (110 °C) with high-solid loading. Lignin was significantly removed from the plant cell wall, and cellulose properties (e.g., crystallinity and degree of polymerization) were also altered during the pretreatment. As a result, the enzymatic digestibility of the pretreated bamboo was dramatically increased. Uniform micro-spherical lignin was directly produced from the pretreatment system, and its particle size could be regulated by controlling the solid loadings and pretreatment temperatures. The lignin microspheres formation mechanism was investigated by analyzing the lignin's size distribution, molecular weight distribution, chemical structure, and hydrophobicity. The DES showed excellent recyclability, and the recycled DES could still remove 42.78% lignin even after 7th circulation associated with 100% glucan saccharification. The mass balance based on 1000 g biomass showed that 196.28 g LMS was directly recovered, which exhibited a high RhB adsorption. Besides, 404.91 g glucose and 36.67 g xylose were obtained after the enzymatic saccharification process. Specifically, GAPI analysis exhibited a near total green and yellow portions of the pictogram, indicating our DES process was green enough to make this biorefinery sustainable. Overall, the proposed DES generated synergistic productions of digestible solid and LMS which could contribute to establish a green and sustainable biorefinery sequence with diverse outputs in one pot.
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