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Impact of Drying on Wood Ultrastructure Observed by Deuterium Exchange and Photoacoustic FT-IR Spectroscopy

机译:干燥对氘交换和光声FT-IR光谱观察到的木材超微结构的影响

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摘要

The impact of drying on the ultrastructure of fresh wood was studied by deuterium exchange coupled with FT-IR analysis. This fundamental investigation demonstrated that water removal leads to irreversible alterations of the wood structure, namely, supramoleeular rearrangements between wood polymers. The deuteration of fresh wood was shown to be fully reversible by a subsequent exposure of the deuterated sample to water (reprotonation). Therefore, the presence of any OD groups in deuterated and then dried wood samples after reprotonation is a clear indicator of reduced accessibility. The extent of changes was affected by drying temperature and relative humidity. Application of this methodology for the evaluation of chemical pulp sample (reference material) resulted in similar response, only more pronounced. Two hypothetical alternatives were proposed for accessibility reduction in dried wood: (i) irreversible aggregation of cellulose microfibrils and (ii) irreversible stiffening of the hemieellulose/lignin matrix that extensively swells when exposed to water.
机译:通过氘交换和FT-IR分析研究了干燥对新鲜木材超微结构的影响。这项基础研究表明,除水会导致木材结构发生不可逆的变化,即木材聚合物之间的超分子重排。通过将氘化样品随后暴露于水(质子化),可以证明新鲜木材的氘化是完全可逆的。因此,重质子化后的氘化然后干燥的木材样品中存在任何OD基团,显然是可及性降低的指标。变化的程度受干燥温度和相对湿度的影响。该方法在化学纸浆样品(参考材料)评估中的应用产生了相似的响应,但更为明显。为减少干燥木材中的可及性,提出了两种假设的替代方法:(i)纤维素微原纤维的不可逆聚集和(ii)暴露于水中时会膨胀的半纤维素/木质素基质的不可逆硬化。

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