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对比经对甲苯磺酸预处理的马尾松和杨树木材的酶解糖化和木质素结构。

Comparison of enzymatic saccharification and lignin structure of masson pine and poplar pretreated by p-Toluenesulfonic acid.

机构信息

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Int J Biol Macromol. 2020 May 15;151:861-869. doi: 10.1016/j.ijbiomac.2020.02.242. Epub 2020 Feb 22.

Abstract

p-Toluenesulfonic acid (p-TsOH) with the hydrotropic and recyclable properties is widely used for rapid remove of lignin from lignocelluloses at low temperature (<100 °C). In this work, both softwood masson pine and hardwood poplar were pretreated with p-TsOH under different conditions and then subjected to enzymatic hydrolysis to compare the effect of p-TsOH pretreatment on their saccharification and lignin structure. Results showed p-TsOH has sensitive selectivity to lignin structure during pretreatment. Around 95% of lignin in poplar can be dissolved at 80 °C within 30 min, while for masson pine, the delignification is only 50%. Following enzymatic hydrolysis with cellulase loading of 20 FPU/g-cellulose for 72 h, the highest sugar yield of pretreated poplar and masson pine is 92.13% and 29.46%, respectively, which indicates that p-TsOH pretreatment alone works well with hardwoods (poplar). Structural analysis of removed lignin implies that p-TsOH mainly results in the cleavage of β-aryl ether bonds of lignin side chains, and the aromatic structure of lignin keeps intact. p-TsOH pretreatment shows the key advantages of low cost and rapid delignification for highly enzymatic saccharification, and provides a promising and green pathway for the development of low cost and sustainable bio-based products for developing a bio-based economy.

摘要

对甲苯磺酸(p-TsOH)具有助溶和可回收的特性,广泛用于低温(<100°C)下快速去除木质纤维素中的木质素。在这项工作中,软木马尾松和硬木杨树分别在不同条件下用 p-TsOH 预处理,然后进行酶水解,以比较 p-TsOH 预处理对它们糖化和木质素结构的影响。结果表明,p-TsOH 在预处理过程中对木质素结构具有敏感的选择性。在 80°C 下,30min 内约有 95%的杨树木质素可以溶解,而马尾松的脱木质素率仅为 50%。用纤维素酶用量为 20 FPU/g-纤维素酶进行 72 h 酶水解后,预处理杨树木质素和马尾松的最高糖得率分别为 92.13%和 29.46%,表明 p-TsOH 预处理单独适用于硬木(杨树)。去除木质素的结构分析表明,p-TsOH 主要导致木质素侧链β-芳基醚键的断裂,而木质素的芳构结构保持完整。p-TsOH 预处理具有低成本和快速脱木质素的关键优势,有利于高酶糖化,为开发低成本、可持续的生物基产品,发展基于生物的经济提供了有前景的绿色途径。

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