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Unraveling variations of crystalline cellulose induced by ionic liquid and their effects on enzymatic hydrolysis

机译:离子液体诱导的结晶纤维素的解链变化及其对酶水解的影响

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摘要

Ionic liquid (IL) is one of the pretreatment processes gaining considerable interests to remove the native recalcitrance of lignocellulose. But the cellulose crystalline transformation during the pretreatment and their correlations with enzymatic digestibility have not been fully elucidated. Microcrystalline cellulose (Avicel) and holocellulose, which have differential sources and original crystallinity, were respectively pretreated with 1-butyl-3-methylimidazolium chloride ([C4min]Cl). Cellulose crystalline variations as well as chemical and morphological changes were determined. Crystallinity of different materials was proved to influence the effects of pretreatment and following enzymatic digestibility. Recrystallized cellulose Iβ was revealed from slight initial cellulose Iα of Avicel, which was accomplished via formation of intermediate paracrystalline phases. The conversion yield of IL pretreated Avicel displayed no obvious changes, mainly resulted from initial high crystalline order and the recrystallization behavior. Recalcitrance of holocellulose was destroyed during cellulose allomorph transformation and hemicelluloses extraction, contributing to significant increase of glucose yield up to 92.20%. Explicit comprehension on cellulose supramolecular structure may help provide more efficient process for bioconversion after IL pretreatment.
机译:离子液体(IL)是一种去除木质纤维素固有的顽固性而受到广泛关注的预处理方法之一。但是,尚未完全阐明预处理过程中的纤维素结晶转化及其与酶消化率的关系。具有不同来源和原始结晶度的微晶纤维素(Avicel)和全纤维素分别用1-丁基-3-甲基咪唑鎓氯化物([C4min] Cl)预处理。测定了纤维素的结晶变化以及化学和形态变化。事实证明,不同材料的结晶度会影响预处理效果和随后的酶消化率。 Avicel的少量初始纤维素Iα揭示了重结晶的纤维素Iβ,这是通过形成中间的顺晶相实现的。 IL预处理的Avicel的转化率没有明显变化,主要是由于最初的高结晶序和重结晶行为所致。纤维素同种异型转化和半纤维素提取过程中破坏了全纤维素的顽固性,从而使葡萄糖的产率大幅提高,最高可达92.20%。对纤维素超分子结构的明确理解可能有助于为IL预处理后的生物转化提供更有效的过程。

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