首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A flow-through fluorimetric sensing device for determination of α- and β-naphthol mixtures using a partial least-squares multivariate calibration approach
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A flow-through fluorimetric sensing device for determination of α- and β-naphthol mixtures using a partial least-squares multivariate calibration approach

机译:一种使用偏最小二乘多元校准方法测定α-和β-萘酚混合物的流通式荧光检测装置

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摘要

A single flow-through optosensor spedctrofluroimetric system is proposed for the resolution of mixtures of α- and β-naphthol at μg l~(-1) levels using a partial least-squares (PLS) calibration approach. The sensor was developed in conjunction with a monochannel flow-injection analysis system with fluorimetric detection using Sephadex QAE A-25 resin as an active sorbent substrate in the flow cell and the second derivative of the native synchronous fluorescence spectra of analytes as analytical signal. In the manifold, the solutions of naphthol (at pH 10.0) were injected in a carrier stream of KCl(0.15 M)/NaOH(10~(-2)M). Because of the strong spectral overlap, the mixture could not be resolved by conventional spectrofluorimetry. The non-additive behavior of the fluorescnece signals revealed an interaction in the system, which was not found by working in the solution only (without the sorbent support). This interaction, probably due to the environment of the analytes on the solid phase, made impossible their simultaneous determination. So, the use of synchronous fluorescnece spectroscopy or even its derivative signal could not resolve satisfactorily the mixture. The simultaneous determination of both naphthol has been carried out by recording the signal of the second-derivative synchronous fluorescence (Δλ = 170 nm) spectra between 200 and 450 nm and a a PLS multivariate calibration treatment. The optimum number of factors was selected by using the cross-validation method. After validating the proposed method, it was applied to the determination of these compounds in natural waters with different amounts of each chemical.
机译:提出了一种单流过式光电传感器荧光定量系统,用于使用偏最小二乘(PLS)校准方法,以μgl〜(-1)的水平分离α-和β-萘酚的混合物。该传感器是结合单通道流动注射分析系统开发的,该系统具有荧光检测功能,使用Sephadex QAE A-25树脂作为流通池中的活性吸附剂基质,并使用分析物的天然同步荧光光谱的二阶导数作为分析信号。在歧管中,将萘酚溶液(pH 10.0)注入到KCl(0.15 M)/ NaOH(10〜(-2)M)载流中。由于强烈的光谱重叠,无法用常规的荧光光谱法分辨混合物。荧光信号的非加性行为揭示了系统中的相互作用,这仅通过在溶液中工作(没有吸附剂载体)才能发现。这种相互作用可能是由于固相中分析物的环境所致,无法同时测定。因此,使用同步荧光光谱甚至其派生信号不能令人满意地分辨混合物。通过记录200至450 nm之间的二阶同步荧光(Δλ= 170 nm)光谱的信号以及PLS多元校准处理,可以同时测定两种萘酚。通过使用交叉验证方法来选择最佳因素数。在验证了所提出的方法后,将其用于测定天然水中含有不同量的每种化学物质的这些化合物。

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