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Analysis of Moisture Content in Beetroot using Fourier Transform Infrared Spectroscopy and by Principal Component Analysis

机译:用傅立叶变换红外光谱法和主成分分析法分析甜菜根中的水分

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摘要

The moisture content of beetroot varies during long-term cold storage. In this work, we propose a strategy to identify the moisture content and age of beetroot using principal component analysis coupled Fourier transform infrared spectroscopy (FTIR). Frequent FTIR measurements were recorded directly from the beetroot sample surface over a period of 34 days for analysing its moisture content employing attenuated total reflectance in the spectral ranges of 2614–4000 and 1465–1853 cm−1 with a spectral resolution of 8 cm−1. In order to estimate the transmittance peak height (Tp) and area under the transmittance curve (ν¯iν¯fTpdν¯) over the spectral ranges of 2614–4000 and 1465–1853 cm−1, Gaussian curve fitting algorithm was performed on FTIR data. Principal component and nonlinear regression analyses were utilized for FTIR data analysis. Score plot over the ranges of 2614–4000 and 1465–1853 cm−1 allowed beetroot quality discrimination. Beetroot quality predictive models were developed by employing biphasic dose response function. Validation experiment results confirmed that the accuracy of the beetroot quality predictive model reached 97.5%. This research work proves that FTIR spectroscopy in combination with principal component analysis and beetroot quality predictive models could serve as an effective tool for discriminating moisture content in fresh, half and completely spoiled stages of beetroot samples and for providing status alerts.
机译:甜菜根的水分含量在长期冷藏中会有所不同。在这项工作中,我们提出了一种使用主成分分析耦合傅立叶变换红外光谱(FTIR)识别甜菜根水分含量和年龄的策略。直接在34天的时间内从甜菜根样品表面记录频繁的FTIR测量,以使用2614–4000和1465–1853 cm -1 光谱范围内的衰减全反射率分析其水分含量。光谱分辨率为8 cm -1 。为了估计透射率峰值高度(Tp)和透射率曲线下的面积 ν< / mi> ¯ i ν f T p d ν 在2614–4000和1465–1853 cm −1 的光谱范围内,对FTIR数据执行了高斯曲线拟合算法。主成分分析和非线性回归分析用于FTIR数据分析。在2614–4000和1465–1853 cm −1 范围内的得分图允许甜菜根质量鉴别。通过采用双相剂量响应功能,开发了甜菜根质量预测模型。验证实验结果证实,甜菜根质量预测模型的准确性达到97.5%。这项研究工作证明,FTIR光谱结合主成分分析和甜菜根质量预测模型可以作为一种有效工具,用于区分甜菜根样品的新鲜,一半和完全变质阶段的水分含量并提供状态警报。

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