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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Critical evaluation of third-order advantage with highly overlapped spectral signals. Determination of fluoroquinolones in fish-farming waters by fluorescence spectroscopy coupled to multivariate calibration
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Critical evaluation of third-order advantage with highly overlapped spectral signals. Determination of fluoroquinolones in fish-farming waters by fluorescence spectroscopy coupled to multivariate calibration

机译:对高度重叠光谱信号的三阶优势的关键评估。 多元校准荧光光谱法测定鱼类耕作水中的氟喹啉

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摘要

In this work, the analytical performance of a third-order/four-way calibration is evaluated to model a highly overlapped system, where two spectral dimensions are extremely similar, and the results are then compared with the results of second-order/three-way calibration. The four-way data were obtained during the photodegradation of fluoroquinolones (ciprofloxacin, norfloxacin and flumequine) in the form of excitation-emission matrices and modeled by unfolded partial least squares coupled to residual trilinearization (U-PLS-RTL). According to the results, the model obtained with the second-order algorithm (unfolded partial least squares coupled to residual bilinearization: U-PLS-RBL) was unsatisfactory due to high spectral overlap. The third-order approach obtained a satisfactory fit and better figures of merit (LOD, REP, RMSEP, and sensitivity, among others) even in the presence of unexpected interferences due to third-order advantages. Finally, the analytical method based on third-order multivariate calibration was applied to quantify these fluoroquinolones in spiked fish-farming water samples. In this case, the third-order advantage allowed us to satisfactorily model the data and to quantify these compounds in this complex matrix, demonstrating the superior analytical performance of the high-order data that were evaluated.
机译:在这项工作中,三阶/四通校准的分析性能被评估为高度重叠的系统,其中,两个频谱尺寸非常类似的模型,其结果然后与第二阶的结果/三相比方式校准。在激发排放基质的形式的氟喹诺酮(CiProfloxacin,Norfloxacin和Flumequine)的光降解期间获得四向数据,并通过耦合到残余三轴化(U-PLS-R1)的展开的部分最小二乘来建模。根据结果​​,由于高光谱重叠,用二阶算法(耦合到残余双精拉耦合的展开的偏最小二乘法:U-PLS-RBL)而获得的模型是不令人满意的。即使在存在由于第三阶优势的意外干扰存在下,三阶方法也获得了令人满意的合适(LOD,REP,RMSEP和敏感性等)的优点(LOD,REP,RMSEP和敏感性)。最后,基于三阶多变量校准的分析方法应用于在尖刺的鱼类耕作水样中量化这些氟喹啉酮。在这种情况下,三阶优势使我们能够令人满意地模拟数据并在该复杂的基质中量化这些化合物,证明评估的高阶数据的卓越分析性能。

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