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首页> 外文期刊>Journal of land use science >Cellulose Structural Change in Various Biomass Species Pretreated by Ionic Liquid at Different Biomass Loadings
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Cellulose Structural Change in Various Biomass Species Pretreated by Ionic Liquid at Different Biomass Loadings

机译:不同生物量载荷下离子液体预处理的各种生物质物种的纤维素结构变化

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High biomass loading is a key technique to reduce the pretreatment cost of lignocellulosic biomass. In this work, various biomass species such as bagasse, erianthus, cedar, and eucalyptus were pretreated using an ionic liquid, 1-ethyl-3-methylimidazolium acetate, at different biomass loadings, particularly focusing on a high loading region. Cellulose structural changes in pretreated biomass were investigated via X-ray scattering and C-13 solid-state nuclear magnetic resonance (SSNMR) spectroscopy. The structural behaviors roughly fell into two categories, corresponding to either grassy (bagasse and erianthus) or woody (cedar and hardwood) biomass. The grassy biomass gradually transformed from cellulose-I to cellulose-II in a monotonic manner against the biomass loading. In contrast, the transformation in the woody biomass occurred abruptly as solids was decreased within the high loadings range (50 wt% to 33 wt%). Below 33 wt%, a reformation of cellulose-I from cellulose-II proceeded readily. In terms of cellulose crystallinity, erianthus as well as bagasse showed a minimum value at 25 wt% loading, whereas the crystallinity for the woody biomass did not possess such a clear minimum. Acid hydrolysis of these pretreated biomass was also conducted and the relationship between the reactivity and the cellulose structural changes was discussed.
机译:高生物量负载是降低木质纤维素生物质预处理成本的关键技术。在这项工作中,使用不同的生物质载体的离子液体,1-乙基-3-甲基咪唑鎓乙酸盐,特别聚焦在高负载区域上,预处理,例如甘蔗渣,Elianth-3-甲基咪唑鎓乙酸盐进行预处理各种生物量物种。通过X射线散射和C-13固态核磁共振(SSNMR)光谱研究预处理生物质的纤维素结构变化。结构行为大致落入两类,对应于草地(甘蔗渣和李莲)或木本(雪松和硬木)生物质。草原生物质以单调的方式从纤维素-I转化为纤维素-II,抵抗生物质负载。相反,随着固体在高负荷范围内(50wt%至33wt%)的固体降低,突然发生木质生物质的转化。低于33wt%,纤维素-i从纤维素-I的重整易于进行。就纤维素结晶度而言,Erianthus以及甘蔗渣在25wt%的载荷下显示出最小值,而木质生物量的结晶度并不具有如此清晰的最小值。还进行了这些预处理生物质的酸水解,并讨论了反应性与纤维素结构变化之间的关系。

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