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首页> 外文期刊>Biomacromolecules >Impact of Drying on Wood Ultrastructure: Similarities in Cell Wall Alteration between Native Wood and Isolated Wood-Basec Fibers
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Impact of Drying on Wood Ultrastructure: Similarities in Cell Wall Alteration between Native Wood and Isolated Wood-Basec Fibers

机译:干燥对木材超微结构的影响:天然木材和孤立的木质基纤维之间的细胞壁变化相似

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摘要

Ultrastructural alterations of fresh wood caused by initial drying were compared to changes incurred during drying of never-dried wood pulp fibers of different macromolecular composition. Drying induced inaccessibility of a native wood sample exhibited remarkable similarity to wood pulp samples of different lignin contents. The results suggest that the supramolecular rearrangements in native wood matrix upon dehydration are qualitatively identical to the well-known changes occurring in pulp fibers after drying, although the changes are considerably different in quantity. The alterations were observed and quantified by monitoring the conversion of accessible deuterium exchanged OH groups in fresh wood and wood pulp fibers to inaccessible, reprotonation resistant OD groups during drying. The deuteration/FT-IR measurements correlated well with the water retention measurement of the pulp samples. Irreversible reduction of water retention due to the supramolecular changes implies reduced accessibility of wood polymers in various chemical and mechanical treatments, such as enzymatic conversion of biomass or preparation of cellulosic nano-objects for diverse applications.
机译:将由初始干燥引起的新鲜木材的超微结构变化与干燥过程中不同高分子组成的从未干燥的木浆纤维的变化进行了比较。干燥引起的天然木材样品的不可及性表现出与不同木质素含量的木浆样品的显着相似性。结果表明,脱水后天然木材基质中的超分子重排在质量上与干燥后纸浆纤维中发生的众所周知的变化相同,尽管变化的数量差异很大。通过监测干燥过程中新鲜木材和木浆纤维中可及的氘交换的OH基团向不可及的耐重质子化的OD基团的转化,观察并量化了这种变化。氘化/ FT-IR测量值与纸浆样品的保水率测量值非常相关。由于超分子变化而导致的保水率的不可逆减少意味着在各种化学和机械处理中木质聚合物的可及性降低,例如生物量的酶促转化或用于各种应用的纤维素纳米物体的制备。

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