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Near infrared applications in the quality control of seed cotton

机译:近红外在籽棉质量控制中的应用

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In the cotton industry the most important parameters for quality of seed cotton (unginned, harvested cotton) are moisture content and impurity level. In Spain, these quality parameters are regulated and cotton producers are awarded incentives. This study was performed to investigate the potential of near infrared (NIR) spectroscopy for determining moisture content and impurity level of seed cotton. A total of 100 cotton samples collected from eight cotton ginners were used. Two spectrometers were employed, one a research level instrument (Foss NIRSystems 6500), the other with a reduced wavelength range more suitable for use at-line (InfraXact Lab). Moisture content was measured using a moisture meter, which is used in cotton industry, and by a drying oven technique. Impurity level was determined by gravimetric analysis. Partial least square regression and classification were performed for moisture and impurity level of cotton, respectively. In sample preparation, the NIRSystems 6500 with a back cover of the sample cell was better in repeatability of spectra than the InfraXact Lab with no back cover. For moisture, the best calibration was developed by using the reference values from the oven drying method and using the first derivative and standard normal variate and detrending as pre-processing of the spectral data, giving a standard error of 0.44% in the range of 5.83-14.96% moisture content. The classification model for the impurity level was developed with a combination of first derivative and multiplicative scatter correction of the spectral data and resulted in an accuracy of 80%. For both moisture and impurity parameters, using the NIRSystems 6500 instrument gave slightly better results than using the InfraXact Lab.
机译:在棉花工业中,对于籽棉(未精棉,收获棉)质量最重要的参数是水分含量和杂质水平。在西班牙,对这些质量参数进行了规定,并向棉花生产商授予了奖励。进行这项研究的目的是调查近红外(NIR)光谱法在确定籽棉中水分含量和杂质水平方面的潜力。从八个轧棉厂收集的总共100个棉样被使用。使用了两种光谱仪,一种是研究级仪器(Foss NIRSystems 6500),另一种具有更短的波长范围,更适合在线使用(InfraXact Lab)。使用用于棉花工业的水分计和干燥炉技术来测量水分。通过重量分析确定杂质水平。分别对棉花的水分和杂质水平进行了偏最小二乘回归和分类。在样品制备中,带有样品池后盖的NIRSystems 6500的光谱重复性要优于不带后盖的InfraXact Lab。对于水分,通过使用烤箱干燥法的参考值并使用一阶导数和标准正态变量以及去趋势作为光谱数据的预处理,可以开发出最佳校准,在5.83的范围内给出0.44%的标准误差水分含量为-14.96%。通过对光谱数据进行一阶导数和乘法散射校正相结合,开发了杂质水平的分类模型,其准确度为80%。对于水分和杂质参数,使用NIRSystems 6500仪器比使用InfraXact Lab可获得更好的结果。

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