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Structural elucidation and antioxidant activity of lignin isolated from rice straw and alkali oxygen black liquor

机译:从稻草秸秆和碱氧黑液中分离木质素的结构阐明和抗氧化活性

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摘要

Alkali oxygen cooking of lignocellulose offers lignin many structural properties and bioactivities for biorefinery. In this work, milled wood lignin (MWL) and alkali oxygen lignin (AOL) were isolated from rice straw and alkali oxygen black liquor, respectively. The lignin structure was characterized by spectroscopy and wet chemistry. Antioxidant activity of lignins was assessed by DPPH and ARTS scavenging ability assay. Results showed the oxidization and condensation of lignin occurred during alkali oxygen cooking. The p-hydroxyphenyl was more easily removed from rice straw than guaiacyl and syringyl units. The ester or ether linkages derived from hydroxycynnamic acids, and the main interunit linkages, i.e. beta-O-4' bonds, were mostly cleaved. Lignin-xylan complex had high reactivity under alkali oxygen condition. Tricin, incorporated into lignin, was detected in MWL but was absent in AOL Nitrobenzene oxidation showed MWL can well represent the protolignin of rice straw, and the products yield decreased dramatically after alkali oxygen cooking. AOL had higher radical scavenging ability than MWL indicating alkali oxygen cooking was an effective pathway for the enhancement of antioxidant activity of lignin. (C) 2018 Elsevier B.V. All rights reserved.
机译:木质纤维素的碱氧烹饪为木质素提供了许多结构性质和生物术的生物术。在这项工作中,分别从稻草和碱氧黑液中分离出碾磨木木质素(MWL)和碱性氧木质素(AOL)。木质素结构的特征在于光谱和湿化学。通过DPPH和ARTS清除能力测定评估木质素的抗氧化活性。结果表明,木质素氧氧烹饪期间发生木质素的氧化和凝结。更容易地从稻草和霉菌单位从稻草中取出p-羟基苯基。衍生自羟基炔酸的酯或醚键,以及主要间歇联系,即β-O-4'键,主要是切割的。木质素 - Xylan络合物在碱性氧气条件下具有高反应性。在MWL中检测到木质素中的三胞苷,但在AOL硝基苯氧化中不存在,显示MWL可以很好地代表水稻秸秆的激脂,并且在碱氧烹饪后产量急剧下降。 AOL具有更高的激进清除能力,而不是MWL,表明碱氧烹饪是增强木质素抗氧化活性的有效途径。 (c)2018年elestvier b.v.保留所有权利。

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