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Prediction of the Crystallinity of White Pine Using Near Infrared Spectroscopy

机译:用近红外光谱法预测白松的结晶度

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The crystallinity of wood is an important property of wood materials, it has an important effect on the physical, mechanical and chemical properties of cellulose fibers such as MOR, density, hardness increase, alpha-cellulose content, dimensional stability, moisture regain and dye sorption, chemical reactivity etc. The aims of this study were to investigate the ability of near infrared spectroscopy (NIR) to predict the crystallinity of white pine wood and the effect of spectra pretreatment on the prediction of crystallinity using NIR. Spectra were collected from wood powder a slowly rotating turntable and the crystallinity of wood was determined by X-ray diffractmeter (XRD) in this experiment. The results showed that NIR coupled with partial least square (PLS) method could be correlated with the crystallinity of white pine wood, and the ability of NIR prediction based on first derivative spectra was better than based on raw spectra or second derivative pretreated spectra. There was a significant correlation between NIR spectra and XRD determined crystallinity. The correlation coefficient for calibration (RC) was 0.932; the mean square error of calibration (RMSEC) was 0.022; the correlation coefficient for validation (Rv) was 0.911; the mean square error of calibration (RMSEV) was 0.023. It was proved that NIR can rapidly and accurately predict white pine wood crystallinity.
机译:木材的结晶度是木质材料的重要性能,它对纤维素纤维的物理,机械和化学性能(例如MOR),密度,硬度增加,α-纤维素含量,尺寸稳定性,回潮率和染料吸附性具有重要影响。本研究的目的是研究近红外光谱(NIR)预测白松木结晶度的能力以及光谱预处理对使用NIR预测结晶度的影响。在缓慢旋转的转盘中从木粉中收集光谱,并在此实验中通过X射线衍射仪(XRD)测定木材的结晶度。结果表明,近红外光谱结合偏最小二乘(PLS)方法可能与白松木的结晶度相关,基于一阶导数光谱的NIR预测能力要优于基于原始光谱或二阶导数预处理的光谱。 NIR光谱和XRD测定的结晶度之间存在显着的相关性。校正的相关系数(RC)为0.932;校准的均方误差(RMSEC)为0.022;验证相关系数(Rv)为0.911;校准的均方误差(RMSEV)为0.023。事实证明,NIR可以快速准确地预测白松木材的结晶度。

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