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首页> 外文期刊>Journal of near infrared spectroscopy >Spatially-resolved radial scanning of tree increment cores for near infrared prediction of microfibril angle and chemical composition
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Spatially-resolved radial scanning of tree increment cores for near infrared prediction of microfibril angle and chemical composition

机译:树状增量核的空间分辨径向扫描,用于近红外预测微纤丝角和化学成分

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A fibre-optic accessorywith a linear drive transport system has been coupled to a near infrared (NIR) instrument to enable solid samples, in this instance increment cores from standing trees, to be scanned at 1 mm increments along the length of the sample. This allows the NIR prediction of wood properties (oven-dry chemical composition and microfibril angle) to be undertaken so that the radial profile of chemistry or microfibril angle can be determined from the pith to the bark. Calibration models provided prediction errors for microfibril angle in Pinus radiata softwood of 4.1° while for Eucalyptus globulus the error is 3.9°. The errors for prediction of chemical composition in Pinus radiata are 0.2% (arabinose) 1.1% (galactose), 2.3% (glucose), 0.7% (mannose), 0.7% (xylose) and 1.6% (lignin).
机译:具有线性驱动传输系统的光纤附件已与近红外(NIR)仪器耦合,以使固体样本(在这种情况下为站立的树木中的增量核心)可以沿样本的长度以1毫米的增量进行扫描。这使得可以进行木材特性(烘箱化学成分和微纤丝角)的近红外预测,以便可以从髓核到树皮确定化学的径向分布或微纤丝角。校准模型提供了辐射松软木微纤丝角度为4.1°的预测误差,而对于桉树,则为3.9°。辐射松化学成分预测的误差为0.2%(阿拉伯糖),1.1%(半乳糖),2.3%(葡萄糖),0.7%(甘露糖),0.7%(木糖)和1.6%(木质素)。

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