木质素
纤维素
纤维素酶
生物量(生态学)
酶水解
化学
化学工程
水解
木质纤维素生物量
热液循环
细胞壁
溶解
材料科学
生物化学
有机化学
生物
农学
工程类
作者
Qian Sun,Weijing Chen,Bo Pang,Zhuohua Sun,Su Shiung Lam,Christian Sonne,Tong‐Qi Yuan
标识
DOI:10.1016/j.biortech.2021.125807
摘要
In recent years, visualization and characterization of lignocellulose at different scales elucidate the modifications of its ultrastructural and chemical features during hydrothermal pretreatment which include degradation and dissolving of hemicelluloses, swelling and partial hydrolysis of cellulose, melting and redepositing a part of lignin in the surface. As a result, cell walls are swollen, deformed and de-laminated from the adjacent layer, lead to a range of revealed droplets that appear on and within cell walls. Moreover, the certain extent morphological changes significantly promote the downstream processing steps, especially for enzymatic hydrolysis and anaerobic fermentation to bioethanol by increasing the contact area with enzymes. However, the formation of pseudo-lignin hinders the accessibility of cellulase to cellulose, which decreases the efficiency of enzymatic hydrolysis. This review is intended to bridge the gap between the microstructure studies and value-added applications of lignocellulose while inspiring more research prospects to enhance the hydrothermal pretreatment process.
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