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首页> 外文期刊>Analytical chemistry >Mitigation of Rayleigh and Raman Spectral Interferences in Multiway Calibration of Excitation—Emission Matrix Fluorescence Spectra
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Mitigation of Rayleigh and Raman Spectral Interferences in Multiway Calibration of Excitation—Emission Matrix Fluorescence Spectra

机译:激发-发射矩阵荧光光谱多方校准中瑞利和拉曼光谱干扰的缓解

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摘要

A weighted parallel factor analysis (W-PARAFAC) model is applied to excitation-emission matrix (EEM) fluorescence spectra of carbamate pesticides to aid with calibration in the presence of Raman scattering. Traditional PARAFAC inefficiently models the Raman scattering, resulting in prediction and calibration errors when a significant background is present. Four different weighting strategies were investigated and compared with subtraction of the appropriate sample background. Using a binary weighting strategy produced superior results, compared with a continuous distribution of weights. Further choice of weighting strategies, which are optimized to include either maximum analyte signal or to exclude a maximum amount of background scattering, is dependent on the degree of overlap and relative signal intensity.
机译:加权并行因子分析(W-PARAFAC)模型应用于氨基甲酸酯农药的激发发射矩阵(EEM)荧光光谱,以在存在拉曼散射的情况下帮助进行校准。传统的PARAFAC无法有效地对拉曼散射进行建模,从而在存在显着背景时会导致预测和校准错误。研究了四种不同的加权策略,并与减去适当样本背景进行了比较。与权重的连续分布相比,使用二进制加权策略产生了更好的结果。加权策略的进一步选择取决于重叠程度和相对信号强度,这些加权策略被优化为包括最大分析物信号或排除最大背景散射。

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