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在生物乙醇生产过程中,从水热处理或稀酸预处理的油菜秸秆中用碱分离得到的木质素的特性。

Characterization of lignins isolated with alkali from the hydrothermal or dilute-acid pretreated rapeseed straw during bioethanol production.

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, China.

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, China.

出版信息

Int J Biol Macromol. 2018 Jan;106:885-892. doi: 10.1016/j.ijbiomac.2017.08.090. Epub 2017 Aug 19.

Abstract

A better understanding of the lignin in the straw of rapeseed, Brassica campestris L., is a prerequisite for promoting the biorefinery industry of rapeseed. Two different methods for fractionating lignin from rapeseed straw were proposed in this study. Lignin in the raw material was isolated with alkaline solution and recovered by acid precipitation. A comparison between two lignin preparations obtained from two different methods has been made in terms of yield and purity. The structural features were investigated by gel permeation chromatography, FT-IR spectroscopy, 2D-HSQC NMR and P NMR. Taking into consideration of the yield and purity, the proposed methods are effective for extracting lignin. NMR results showed that syringyl (S) was the predominant unit over guaiacyl (G) or p-hydroxyphenyl (H) units in the lignin preparations, and linkages β-O-4', β-β' and β-5' were also identified and quantified by NMR techniques. This study demonstrated that the combination of hydrothermal or dilute-acid pretreatment and alkaline process could efficiently isolate the lignins from the rapeseed straw to further applications for industries. It was found that the enzymatic hydrolysis of the two-step pretreated rapeseed straw increased 5.9 times than the straw without treatment, which is benefit for bioethanol production from rapeseed straw.

摘要

更好地了解油菜( Brassica campestris L. )秸秆中的木质素,是促进油菜生物炼制产业发展的前提。本研究提出了两种从油菜秸秆中分离木质素的不同方法。用碱性溶液从原料中分离木质素,然后用酸沉淀回收。对两种不同方法得到的两种木质素制剂的产率和纯度进行了比较。通过凝胶渗透色谱、FT-IR 光谱、2D-HSQC NMR 和 P NMR 研究了其结构特征。考虑到产率和纯度,所提出的方法是提取木质素的有效方法。NMR 结果表明,木质素制剂中愈创木基(S)单元比愈创木基(G)或对羟苯基(H)单元更为丰富,通过 NMR 技术还鉴定和定量了β-O-4'、β-β'和β-5'键。本研究表明,水热或稀酸预处理与堿法相结合,可以有效地从油菜秸秆中分离木质素,进一步应用于工业领域。研究发现,两步预处理后的油菜秸秆的酶水解比未经处理的油菜秸秆增加了 5.9 倍,有利于油菜秸秆生产生物乙醇。

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