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Selection of the NIR Region for a Regression Model of the Ethanol Concentration in Fermentation Process by an Online NIR and Mid-IR Dual-Region Spectrometer and 2D Heterospectral Correlation Spectroscopy

机译:在线近红外和中红外双区光谱仪和二维异谱相关光谱法为发酵过程中乙醇浓度回归模型选择近红外区

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摘要

A new selection procedure of an informative near-infrared (NIR) region for regression model building is proposed that uses an online NIR/mid-infrared (mid-IR) dual-region spectrometer in conjunction with two-dimensional (2D) NIR/mid-IR heterospectral correlation spectroscopy. In this procedure, both NIR and mid-IR spectra of a liquid sample are acquired sequentially during a reaction process using the NIR/mid-IR dual-region spectrometer; the 2D NIR/mid-IR heterospectral correlation spectrum is subsequently calculated from the obtained spectral data set. From the calculated 2D spectrum, a NIR region is selected that includes bands of high positive correlation intensity with mid-IR bands assigned to the analyte, and used for the construction of a regression model. To evaluate the performance of this procedure, a partial least-squares (PLS) regression model of the ethanol concentration in a fermentation process was constructed. During fermentation, NIR/mid-IR spectra in the 10000 – 1200 cm−1 region were acquired every 3 min, and a 2D NIR/mid-IR heterospectral correlation spectrum was calculated to investigate the correlation intensity between the NIR and mid-IR bands. NIR regions that include bands at 4343, 4416, 5778, 5904, and 5955 cm−1, which result from the combinations and overtones of the C–H group of ethanol, were selected for use in the PLS regression models, by taking the correlation intensity of a mid-IR band at 2985 cm−1 arising from the CH3 asymmetric stretching vibration mode of ethanol as a reference. The predicted results indicate that the ethanol concentrations calculated from the PLS regression models fit well to those obtained by high-performance liquid chromatography. Thus, it can be concluded that the selection procedure using the NIR/mid-IR dual-region spectrometer combined with 2D NIR/mid-IR heterospectral correlation spectroscopy is a powerful method for the construction of a reliable regression model.
机译:提出了一种新的选择信息量近红外(NIR)区域进行回归模型构建的方法,该方法将在线NIR /中红外(mid-IR)双区域光谱仪与二维(2D)NIR / mid结合使用-IR异谱相关光谱。在此过程中,使用NIR / mid-IR双区光谱仪在反应过程中依次获取液体样品的NIR和中红外光谱。随后,从获得的光谱数据集中计算2D NIR / mid-IR异光谱相关光谱。从计算的2D光谱中,选择一个NIR区域,该区域包括高正相关强度的带和分配给分析物的中红外带,并用于构建回归模型。为了评估该程序的性能,构建了发酵过程中乙醇浓度的偏最小二乘(PLS)回归模型。在发酵过程中,每3分钟获取10000 – 1200 cm-1区域中的NIR / mid-IR光谱,并计算2D NIR / mid-IR异光谱相关光谱以研究NIR与中红外波段之间的相关强度。通过取相关性,选择了由C–H组乙醇的组合和泛音产生的包括4343、4416、5778、5904和5955 cm-1的NIR区域用于PLS回归模型以乙醇的CH3不对称拉伸振动模式引起的2985 cm-1处的中红外波段强度为参考。预测结果表明,根据PLS回归模型计算出的乙醇浓度非常适合通过高效液相色谱获得的乙醇浓度。因此,可以得出结论,将NIR / mid-IR双区域光谱仪与2D NIR / mid-IR异谱相关光谱结合使用,是建立可靠的回归模型的有力方法。

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