木质素
化学
解聚
生物炼制
过氧乙酸
有机化学
丁香酸
香兰素
香兰素酸
单体
阿魏酸
木质素磺酸盐
玉米秸秆
水解
聚合物
色谱法
过氧化氢
原材料
没食子酸
抗氧化剂
作者
Ruoshui Ma,Mond Guo,Kuan-Ting Lin,Vincent R. Hebert,Jinwen Zhang,Michael P. Wolcott,Melissa Quintero,Karthikeyan K. Ramasamy,Xiaowen Chen,Xiao Zhang
标识
DOI:10.1002/chem.201600546
摘要
Abstract Lignin is the largest source of renewable material with an aromatic skeleton. However, due to the recalcitrant and heterogeneous nature of the lignin polymer, it has been a challenge to effectively depolymerize lignin and produce high‐value chemicals with high selectivity. In this study, a highly efficient lignin‐to‐monomeric phenolic compounds (MPC) conversion method based on peracetic acid (PAA) treatment was reported. PAA treatment of two biorefinery lignin samples, diluted acid pretreated corn stover lignin (DACSL) and steam exploded spruce lignin (SESPL), led to complete solubilization and production of selective hydroxylated monomeric phenolic compounds (MPC‐H) and monomeric phenolic acid compounds (MPC‐A) including 4‐hydroxy‐2‐methoxyphenol, p ‐hydroxybenzoic acid, vanillic acid, syringic acid, and 3,4‐dihydroxybenzoic acid. The maximized MPC yields obtained were 18 and 22 % based on the initial weight of the lignin in SESPL and DACSL, respectively. However, we found that the addition of niobium pentoxide catalyst to PAA treatment of lignin can significantly improve the MPC yields up to 47 %. The key reaction steps and main mechanisms involved in this new lignin‐to‐MPC valorization pathway were investigated and elucidated.
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