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Mesoporosity of Delignified Wood Investigated by WaterVapor Sorption

机译:水研究的木质化木的介孔率蒸气吸附

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摘要

Wood represents a highly suitable biobased scaffold for the development of mechanically robust and functional materials. Its functionalizability can be enhanced by means of delignification, resulting in an increase in porosity due to partial or complete removal of lignin and hemicellulose constituents. In this work, the impact of partial and complete delignification on the mesoporous structure is investigated via water vapor sorption isotherms and deuterium exchange. Pore size distributions of wood samples with five different delignification levels were compared to native wood. The derived pore size distributions at the water swollen state reveal an increase in porosity with decreasing lignin content. However, after complete lignin removal, drying causes a nonreversible collapse of the cell wall, which results in reduced porosity.
机译:木材代表了非常适合用于开发机械坚固和功能性材料的生物基支架。可以通过去木质素来增强其功能性,由于木质素和半纤维素成分的部分或完全去除,导致孔隙率增加。在这项工作中,通过水蒸气吸附等温线和氘交换研究了部分和完全去木质素对中孔结构的影响。将具有五个不同脱木素水平的木材样品的孔径分布与天然木材进行了比较。在水溶胀状态下得出的孔径分布表明,孔隙率随木质素含量的降低而增加。但是,在完全去除木质素后,干燥会导致细胞壁不可逆转的塌陷,从而导致孔隙率降低。

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