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Crude Protein content determination of potatoes by NIRS technology

机译:粗蛋白质含量测定德累斯技术的土豆

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The determination of the composition of potatoes is essential in order to meet the current demand for quality products. The traditional methods to measure potato components are both expensive and laborious; therefore, some authors have studied the application of faster and cheaper techniques such as near infrared spectroscopy (NIRS) to determine those components. The objective of the present work is to predict the crude protein (CP) content of lyophilized samples of potato by MRS.135 samples were used in this study. MR spectral data were collected using an AOTF-NIR Analyser (Brimrose) in the reflectance mode. Each sample was scanned twice in the 1100- 2300 nm spectral range. Partial least squares (PLS) regression was applied to the spectral data through Unscramble software (version 8.0.5)to develop a calibration model capable of estimating the CPcontent of the samples. As a result, correlation coefficients of 0.95, 0.86 and 0.88 were obtained for calibration, cross validation and external validation respectively. Moreover, low standard errors were achieved. The standard error of calibration (SEC) was 0.52, the standard error of cross validation (SECV) was 0.88 and finally, the standard error of prediction was 0.75.
机译:为了满足当前对优质产品的需求,土豆组成的测定至关重要。传统的测量马铃薯组件的方法既昂贵又艰苦;因此,一些作者研究了更快和更便宜的技术的应用,例如近红外光谱(NIRS)以确定这些组件。本作研究的目的是预测本研究中使用的样品乳酸冻干样品的粗蛋白(CP)含量的冻干样品。使用反射模式的AOTF-NIR分析仪(Brimrose)收集MR光谱数据。在1100-2300nm光谱范围内扫描每个样品两次。通过解读软件(8.0.5)将部分最小二乘(PLS)回归应用于光谱数据,以开发能够估计样本的CPContent的校准模型。结果,获得0.95,0.86和0.88的相关系数分别用于校准,交叉验证和外部验证。此外,实现了低标准误差。校准的标准误差(SEC)为0.52,交叉验证的标准误差为0.88,最后,预测的标准误差为0.75。

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