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首页> 外文期刊>Holzforschung >Rapid and nondestructive evaluation of hygroscopic behavior changes of thermally modified softwood and hardwood samples using near-infrared hyperspectral imaging (NIR-HSI)
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Rapid and nondestructive evaluation of hygroscopic behavior changes of thermally modified softwood and hardwood samples using near-infrared hyperspectral imaging (NIR-HSI)

机译:利用近红外高光谱成像(NIR-HSI)快速和无损评估热改性软木和硬木样品的变化变化

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The objective of this work was to provide a rapid and nondestructive imaging method for evaluating the hygroscopic behavior of thermally modified lignocellulosic materials (softwood and hardwood). The difference in the hygroscopic behavior was explained by moisture content (MC) mapping results and molecular association characteristics of absorbed water (i.e. wealdy, moderately, and strongly hydrogen-bonded water molecules) with wood at various relative humidities (RH). To achieve this goal, near-infrared (NIR) spectral images in the wavelength range 1816-2130 nm (covering the combination of stretching and deformation vibrations for OH) were used to visualize MC distributions over the surface of Japanese cedar and European beech samples which had been thermally treated at different temperatures. A curve fitting method was utilized to explore changes in water-wood structure characteristics based on shifts to longer wavelength in spectral signals caused by increasing MC. The curve fitting results support the recent nuclear magnetic resonance (NMR) studies that different bound water stabilities may pool in different compartments of the wood cell wall. Furthermore, water was firmly bound to wood at low RHs and H-bonds gained mobility as the number of absorbed molecules increased. It is concluded that NIR hyperspectral imaging also has the potential to be a complementary methodology for studying the transient changes of wood-water interactions before equilibrium.
机译:这项工作的目的是提供一种快速和非破坏性的成像方法,用于评估热改性木质纤维素材料(软木和硬木)的吸湿性。吸湿行为的差异是通过水分含量(MC)映射结果和吸收的水(即WEALDY,适度和强氢键合水分子)的分子结合特性,以各种相对湿度(RH)。为了实现这一目标,使用波长范围的近红外线(NIR)光谱图像(覆盖OH)的拉伸和变形振动的组合)来显示日本雪松和欧洲山毛榉样的表面上的MC分布在不同的温度下热处理。利用曲线拟合方法探讨基于MC增加引起的频谱信号中的频率较长波长的水木结构特性的变化。曲线拟合结果支持最近的核磁共振(NMR)研究,即不同的结合水稳定性可能在木细胞壁的不同隔室中池。此外,随着吸收分子的数量增加,水在低温下牢固地与木材牢固地结合到木材中。得出结论,NIR高光谱成像还具有互补方法,用于研究平衡前的木水相互作用的瞬态变化。

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