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A novel baseline-correction method for standard addition based derivative spectra and its application to quantitative analysis of benzo(a)pyrene in vegetable oil samples

机译:一种基于标准加成的导数谱的基线校正新方法及其在植物油样品中苯并(a)py的定量分析中的应用

摘要

In the present work, a baseline-correction method based on peak-to-derivative baseline measurement was proposed for the elimination of complex matrix interference that was mainly caused by unknown components and/or background in the analysis of derivative spectra. This novel method was applicable particularly when the matrix interfering components showed a broad spectral band, which was common in practical analysis. The derivative baseline was established by connecting two crossing points of the spectral curves obtained with a standard addition method (SAM). The applicability and reliability of the proposed method was demonstrated through both theoretical simulation and practical application. Firstly, Gaussian bands were used to simulate 'interfering' and 'analyte' bands to investigate the effect of different parameters of interfering band on the derivative baseline. This simulation analysis verified that the accuracy of the proposed method was remarkably better than other conventional methods such as peak-to-zero, tangent, and peak-to-peak measurements. Then the above proposed baseline-correction method was applied to the determination of benzo(a) pyrene (BaP) in vegetable oil samples by second-derivative synchronous fluorescence spectroscopy. The satisfactory results were obtained by using this new method to analyze a certified reference material (coconut oil, BCR (R)-458) with a relative error of -3.2% from the certified BaP concentration. Potentially, the proposed method can be applied to various types of derivative spectra in different fields such as UV-visible absorption spectroscopy, fluorescence spectroscopy and infrared spectroscopy.
机译:在当前工作中,提出了一种基于峰到导数基线测量的基线校正方法,以消除复杂的基质干扰,该干扰主要是由导数光谱分析中未知的成分和/或背景引起的。这种新方法特别适用于基质干扰成分显示宽谱带的情况,这在实际分析中很常见。通过连接使用标准添加方法(SAM)获得的光谱曲线的两个交叉点来建立导数基线。通过理论仿真和实际应用证明了该方法的适用性和可靠性。首先,使用高斯频带模拟“干扰”频带和“分析物”频带,以研究干扰频带的不同参数对导数基线的影响。仿真分析证明,该方法的准确性明显优于其他传统方法,例如峰零,切线和峰峰值测量。然后采用上述建议的基线校正方法,通过二阶导数同步荧光光谱法测定植物油样品中的苯并(a)pyr(BaP)。使用这种新方法分析认证的参考物质(椰子油,BCR(R)-458)可获得令人满意的结果,相对于认证的BaP浓度的相对误差为-3.2%。所提出的方法可以潜在地应用于不同领域中的各种类型的导数光谱,例如紫外-可见吸收光谱,荧光光谱和红外光谱。

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