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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Chemometrics-assisted excitation-emission fluorescence analytical data for rapid and selective determination of optical brighteners in the presence of uncalibrated interferences
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Chemometrics-assisted excitation-emission fluorescence analytical data for rapid and selective determination of optical brighteners in the presence of uncalibrated interferences

机译:化学计量学辅助的激发-发射荧光分析数据,用于在存在未校正干扰的情况下快速,选择性地测定荧光增白剂

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摘要

This study describes a novel approach for the simultaneous determination of CBS-X and CXT as widely used optical brighteners in household detergent, by combining the advantage of the high sensitivity of molecular fluorescence, and the selectivity of second-order chemometric methods. The proposed method is assisted by second-order chemometric analyses employing the PARAFAC, SWATLD and APTLD that help us to determine CBS-X and CXT in laundry powders and environmental samples, through the unique decomposition of the three-way data array. Proposed method can provide the extraction of relative concentrations of the analytes, as well as the spectral profiles. This approach achieves the second-order advantage and in principle could be able to overcome the spectral uncalibrated interference problems in the determination of CBS-X and CXT at the ng g(-1) level. By spiking the known concentrations of these compounds to the real samples, the accuracy of the proposed methods was validated and recoveries of the spiked values were calculated. High recoveries (90.00%-113.33%) for the spiked laundry powders and real environmental samples indicate the present method successfully faces this complex challenge without the necessity of applying separation and preconcentration steps in environmental contaminations. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究结合了分子荧光的高灵敏度和二阶化学计量学方法的选择性,描述了同时测定家用洗涤剂中广泛使用的荧光增白剂CBS-X和CXT的新方法。拟议的方法由使用PARAFAC,SWATLD和APTLD的二阶化学计量分析辅助,通过三路数据阵列的独特分解,可帮助我们确定洗衣粉和环境样品中的CBS-X和CXT。提出的方法可以提供分析物相对浓度的提取以及光谱图。该方法具有二阶优势,并且原则上可以在ng g(-1)级别确定CBS-X和CXT时克服频谱未校准的干扰问题。通过将这些化合物的已知浓度添加到实际样品中,可以验证所提出方法的准确性,并计算出加标值的回收率。加标洗衣粉和实际环境样品的高回收率(90.00%-113.33%)表明,本方法成功地应对了这一复杂的挑战,而无需在环境污染物中采用分离和预浓缩步骤。 (C)2015 Elsevier B.V.保留所有权利。

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