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首页> 外文期刊>Journal of near infrared spectroscopy >Predicting microfibril angle in Eucalyptus wood from different wood faces and surface qualities using near infrared spectra
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Predicting microfibril angle in Eucalyptus wood from different wood faces and surface qualities using near infrared spectra

机译:使用近红外光谱从不同的木材表面和表面质量预测桉木木材中的微原纤维角度

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The microfibril angle (MFA) of crystalline cellulose in the wood cell wall along the stem axis has major effects on stiffness and longitudinal shrinkage of wood and is of key importance to timber quality. The aims of this study were: (1) to develop partial least square (PLS) regression models for microfibril angle (measured on tangential sections by X-ray diffraction) based on NIR spectra measured on tangential and on radial surfaces; (2) to develop PLS regression models for MFA based on radial NIR spectra collected from wood surfaces of different quality; and (3) to verify the reliability of these PLS-R models by external validations. T values were recorded by X-ray diffraction on tangential sections while NIR spectra were taken on tangential and radial wood surfaces. PLS-R calibrations for MFA based on tangential NIR spectra were better (r_p~2=0.72) than those using radial NIR spectra (r_p~2=0.64). The key role of the chemical components and the effect of surface quality of wood on NIR spectroscopy calibrations are discussed. Considering the differences between experimental conditions, these findings showed the potential of the NIR-based models for predicting MFA in Eucalyptus wood, even using spectra taken from different wood faces and surface qualities.
机译:木材细胞壁中沿茎干轴的结晶纤维素微纤丝角(MFA)对木材的刚度和纵向收缩率有重要影响,并且对木材质量至关重要。这项研究的目的是:(1)基于在切向和径向表面上测量的NIR光谱,开发微原纤角的偏最小二乘(PLS)回归模型(通过X射线衍射在切向截面上测量); (2)基于从不同质量的木材表面收集的径向近红外光谱,建立MFA的PLS回归模型; (3)通过外部验证来验证这些PLS-R模型的可靠性。通过X射线衍射在切向截面上记录T值,而在切向和径向木材表面上获取NIR光谱。基于切向近红外光谱的MFA的PLS-R校准(r_p〜2 = 0.72)比使用径向近红外光谱的r(p〜2 = 0.64)更好。讨论了化学成分的关键作用以及木材表面质量对近红外光谱校准的影响。考虑到实验条件之间的差异,这些发现表明,即使使用从不同木材表面和表面质量获得的光谱,基于NIR的模型也可以预测桉木中的MFA。

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