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Nanomaterials and Chemical Modifications for Enhanced Key Wood Properties: A Review

机译:纳米材料和化学改性增强关键木材性能:综述

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摘要

This work briefly reviews the research milestones in the area of wood chemical modification, focusing on acetylated and furfurylated wood which have been scaled up, and exploits the solutions that nanotechnology can offer to wood protection as an alternative green innovative approach in improving key wood properties, namely the dimensional stability when subjected to a fluctuating moisture content and a susceptibility to biodegradability by microorganisms. Recently, nanomaterials were found to be able applicable in wood science. The target is to improve some special physicochemical characteristics of wood in order to resist extreme conditions (climate, bacteria, etc.), giving an enhanced potentiality. It is well-established that the wood cell wall shows a porosity of molecular scale dimensions; this is caused by the partial filling of spaces between the microfibrils of the cellulose mainly by polyoses and lignin. The small-sized nanoparticles can deeply and effectively penetrate into the wood, altering its surface chemistry, improving its properties, and therefore, resulting in a hyper-performance product.
机译:这项工作简要回顾了木材化学改性领域的研究里程碑,重点是已扩大规模的乙酰化和糠醛化木材,并利用纳米技术可以为木材保护提供的解决方案,以作为替代绿色创新方法来改善关键木材性能,即,当水分含量波动时,尺寸稳定性以及微生物对生物降解性的敏感性。最近,发现纳米材料能够应用于木材科学。目标是改善木材的某些特殊理化特性,以抵抗极端条件(气候,细菌等),从而增强潜力。众所周知,木细胞壁显示出分子尺度尺寸的孔隙。这是由于主要由多糖和木质素部分填充了纤维素的微纤维之间的空间引起的。小尺寸的纳米颗粒可以深入有效地渗透到木材中,从而改变其表面化学性质,改善其性能,从而产生高性能的产品。

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