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Physical and Mechanical Properties of Thermally-Modified Beech Wood Impregnated with Silver Nano-Suspension and Their Relationship with the Crystallinity of Cellulose

机译:纳米银悬浮液对热改性山毛榉木材的物理力学性能及其与纤维素结晶度的关系

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摘要

The aim of this study was to investigate the physical and mechanical properties of thermally modified beech wood impregnated with silver nano-suspension and to examine their relationship with the crystallinity of cellulose. Specimens were impregnated with a 400 ppm nanosilver suspension (NS); at least, 90% of silver nano-particles ranged between 20 and 100 nano-meters. Heat treatment took place in a laboratory oven at three temperatures, namely 145, 165, and 185 °C. Physical properties and mechanical properties of treated wood demonstrated statistically insignificant fluctuations at low temperatures compared to control specimens. On the other hand, an increase of temperature to 185 °C had a significant effect on all properties. Physical properties (volumetric swelling and water absorption) and mechanical properties (MOR and MOE) of treated wood demonstrated statistically insignificant fluctuations at low temperatures compared to control specimens. This degradation ultimately resulted in significant decrease in MOR, impact strength, and physical properties. However, thermal modification at 185 °C did not seem to cause significant fluctuations in MOE and compression strength parallel to grain. As a consequence of the thermal modification, part of amorphous cellulose was changed to crystalline cellulose. At low temperatures an increased crystallinity caused some of the properties to be improved. Crystallinity also demonstrated a decrease in NS-HT185 in comparison to HT185 treatment. TCr indices in specimens thermally treated at 145 °C revealed a significant increase as a result of impregnation with nanosilver suspension. This improvement in TCr index resulted in a noticeable increase in MOR and MOE values. Other properties did not show significant fluctuations, suggesting that the effect of the increased crystallinity and cross-linking in lignin was more than the negative effect of the low cell-wall polymer degradation caused by thermal modification. Change of amorphous cellulose to crystalline cellulose, as well as cross-linking in lignin, partially ameliorated the negative effects of thermal degradation at higher temperatures and therefore, compression parallel to grain and modulus of elasticity did not decrease significantly. Overall, it can be concluded that increased crystallinity and cross-linking in lignin can compensate for some decreased properties caused by thermal modification, but it would be significantly dependent on the temperature under which modification is carried out. Impregnating specimens with silver nano-suspension prior to thermal modification enhanced the effects of thermal modification as a result of improved thermal conductivity.
机译:这项研究的目的是研究浸渍有银纳米悬浮液的热改性山毛榉木材的物理和机械性能,并研究它们与纤维素结晶度的关系。用400 ppm纳米银悬浮液(NS)浸渍样品;至少有90%的银纳米颗粒介于20到100纳米之间。热处理是在实验室烤箱中的三个温度下进行的,分别为145、165和185°C。与对照样品相比,在低温下,经处理的木材的物理性能和机械性能在统计学上没有明显的波动。另一方面,将温度提高到185°C对所有性能都有重要影响。与对照样品相比,低温处理后的木材的物理性能(体积溶胀和吸水率)和机械性能(MOR和MOE)在统计学上没有明显的波动。这种降解最终导致MOR,冲击强度和物理性能显着下降。但是,在185°C下进行热改性似乎并未引起MOE和与晶粒平行的抗压强度的明显波动。由于热改性,无定形纤维素的一部分变成了结晶纤维素。在低温下,结晶度的提高导致某些性能得到改善。与HT185处理相比,结晶度也证明了NS-HT185的降低。纳米银悬浮液浸渍后,在145°C热处理的样品中的TCr指数显着增加。 TCr指数的提高导致MOR和MOE值显着增加。其他性能没有显示出明显的波动,表明木质素中结晶度和交联度增加的影响大于热改性引起的低细胞壁聚合物降解的负面影响。无定形纤维素向结晶纤维素的转化以及木质素中的交联部分改善了高温下热降解的负面影响,因此,平行于晶粒的压缩和弹性模量并未显着降低。总的来说,可以得出结论,木质素中结晶度的增加和交联可以补偿由热改性引起的某些性能下降,但是这将很大程度上取决于进行改性的温度。在热改性之前用银纳米悬浮液浸渍样品可提高热导率,从而增强热改性的效果。

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