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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Structural Elucidation of Lignin Polymers of Eucalyptus Chips during Organosolv Pretreatment and Extended Delignification
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Structural Elucidation of Lignin Polymers of Eucalyptus Chips during Organosolv Pretreatment and Extended Delignification

机译:有机溶剂预处理和扩展去木质素过程中桉木片木质素聚合物的结构解析

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摘要

Effective delignification of lignocelluloses is a very important to guarantee the economic feasibility of organosolv-based biorefinery. Eucalyptus chips were successively subjected to organosolv pretreatment (AEOP) and extended delignification (ED) process in the present study. The effects of delignification processes were scientifically evaluated by component analysis, SEM, and CP-MAS NMR techniques. It was found that the integrated process of organosolv pretreatment and subsequent delignification resulted in an effective delignification. The fundamental chemistry of the lignin obtained after these processes was thoroughly investigated by FT-IR, multidimensional NMR (~(31)P-, ~(13)C-, and 2D-HSQC NMR), and GPC techniques. It was observed that an extensive cleavage of aryl ether linkages, ethoxylation, and some condensation reactions occurred in AEOP process, while α-oxidation mainly took place in alkaline hydrogen peroxide (AHP) process. It is believed that better understanding the fundamental chemistiy of lignin facilitates the optimization of the delignification process. More importantly, well-defined of lignin polymers will facilitate their value-added applications in current and future biorefineries.
机译:木质纤维素的有效脱木质素对于确保基于有机溶剂的生物精炼厂的经济可行性非常重要。在本研究中,桉木片先后进行了有机溶剂预处理(AEOP)和扩展去木质素(ED)工艺。通过成分分析,SEM和CP-MAS NMR技术科学评估了脱木素过程的效果。发现有机溶剂预处理和随后的脱木质素的综合过程导致有效的脱木质素。通过FT-IR,多维NMR(〜(31)P-,〜(13)C-和2D-HSQC NMR)和GPC技术,对这些过程后得到的木质素的基本化学性质进行了彻底研究。观察到在AEOP过程中发生了芳基醚键的广泛裂解,乙氧基化和一些缩合反应,而α-氧化主要发生在碱性过氧化氢(AHP)过程中。据信,更好地理解木质素的基本化学性质有助于木质素化过程的优化。更重要的是,定义明确的木质素聚合物将有助于其在当前和未来的生物精炼厂中的增值应用。

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