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首页> 外文期刊>Sustainable Chemical Processes >Unraveling the structural characteristics of lignin in hydrothermal pretreated fibers and manufactured binderless boards from Eucalyptus grandis
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Unraveling the structural characteristics of lignin in hydrothermal pretreated fibers and manufactured binderless boards from Eucalyptus grandis

机译:揭示水热预处理纤维和人造无桉木板中木质素的结构特征

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Background Eucalyptus grandis is one of the most abundant biomass from plantation in many parts of the world. The binderless board were manufactured from hydrothermal pretreated fibers of Eucalyptus wood and characterized for the chemical analyses and mechanical strengths in order to assess the mechanism of self-bonding. To make clear the self-bonding mechanism of these binderless boards, the structural characteristics of cellulolytic enzyme lignin (CEL) isolated from Eucalyptus wood, its hydrothermal pretreated fibers, and binderless boards were thoroughly investigated by chemical and spectroscopic methods. Results The result revealed that hydrothermal pretreatment and hot pressing process could change cellulose crystalline structures by disrupting inter/intra hydrogen bonding of cellulose chains. During the hydrothermal pretreatment of Eucalyptus wood, acid-catalyzed cleavage of β- O -4′ linkages and ester bonds were the major mechanisms of lignin cleavage. This degradation pathway led to a more condensed lignin which has a high average molecular weight and more phenolic hydroxyl groups than the control. The hot pressing process resulted in the binderless boards with reduced lignin contents and decreased the glass transition temperature, thus making the lignin more accessible to the fiber surface. CEL isolated from the binderless boards showed an increased syringyl to guaiacyl propane (S/G) ratio but a lower molecular weight than those of the untreated Eucalyptus wood and the hydrothermal pretreated fibers. Conclusions Based on the finding of this study, it is suggested that the combination of hydrothermal pretreatment and hot pressing process is a good way for conditioning hardwood sawdust for the production of binderless boards. The thermal softening of lignin, rich in phenolic hydroxyl groups, and increased condensed lignin structure contributed to the self-bonding formation of lignocellulosic materials.
机译:背景桉树是世界许多地方人工林中生物量最丰富的生物量之一。无粘合剂板是由桉木经水热预处理的纤维制成的,其特征在于化学分析和机械强度,以评估自粘合的机理。为了阐明这些无粘合剂板的自粘合机理,通过化学和光谱方法对从桉木,其水热预处理纤维和无粘合剂板中分离的纤维素分解酶木质素(CEL)的结构特征进行了深入研究。结果结果表明,水热预处理和热压过程可以通过破坏纤维素链间/氢键间的键合来改变纤维素的晶体结构。在桉木水热预处理过程中,β-O-4'键和酯键的酸催化裂解是木质素裂解的主要机理。该降解途径导致木质素更稠合,木质素具有比对照高的平均分子量和更多的酚羟基。热压工艺导致无粘合剂的木板中木质素含量降低,玻璃化转变温度降低,从而使木质素更易于进入纤维表面。从无粘合剂板中分离出的CEL显示出丁香基与愈创木基丙烷(S / G)的比率增加,但分子量却低于未处理的桉木和水热预处理纤维。结论基于本研究的发现,建议将水热预处理与热压工艺相结合是调节硬木锯末以生产无粘合剂木板的好方法。富含酚羟基的木质素的热软化和增加的木质素缩合结构有助于木质纤维素材料的自结合形成。

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