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Data fusion applied to the photodegradation study of ciprofloxacin using hyphenated detection systems (UV-Vis and fluorescence) and multivariate curve resolution

机译:使用连字母检测系统(UV-VIS和荧光)和多变量曲线分辨率对环丙沙星的光降解研究应用于CiProfloxacin的数据融合

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In this article, a new method was developed based on a flow system with hyphenated UV and fluorescence detection to study the photodegradation of ciprofloxacin. The photodegradation was investigated at both pH 7.0 and 9.0 (Britton-Robinson buffer), i.e. the conditions normally found in hospital wastewaters (HWWs) and urban wastewaters (UWWs). The flow system included a reactor (12 m in length and 0.5 mm internal diameter) coiled on a germicide UV lamp (lambda(max) 254 nm, 15 W). Ciprofloxacin solution was pumped through the system at the optimal conditions (0.1 mL min(-1) flow rate), with a maximal time of residence in the photoreactor of 18.8 min. Both UV and fluorescence spectra were taken every 4 s. The UV spectra were recorded from 210 to 400 nm (Delta lambda = 2.0 nm), while the fluorescence spectra were recorded from 372 to 620 nm (Delta lambda = 1.7 nm). A data fusion strategy was carried out to analyze the obtained spectroscopic signals and the Hard and Soft Multivariate Curve Resolution (HS-MCR) was applied to obtain the pure spectra and concentration profiles related to ciprofloxacin and its main degradation products, as well as the corresponding kinetic rate constants. Previously, photodegradation pathways were proposed, taking into account the concentration profiles recovered by pure soft modeling analysis. The rate constants for ciprofloxacin obtained after HS-MCR analysis were 0.0302 s(-1) and 0.0322 s(-1) for pH 7.0 and 9.0, respectively. The reaction pathway and the kinetic rate constants were in close agreement with the ones reported in the bibliography and with the HPLC analysis previously performed. The proposed method is simple, rapid, and represents a greener and cheaper alternative to HPLC for studying photodegradation processes. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,基于具有敏紫外线和荧光检测的流动系统开发了一种新方法,以研究环丙沙星的光降解。在pH 7.0和9.0(Britton-Robinson Buffer)中研究了光降解,即在医院废水器(HWES)和城市废水器(UWWS)中通常发现的条件。流动系统包括在杀菌UV灯(Lambda(Max)254nm,15W)上盘绕的反应器(长度为12m和0.5mm的内径)。通过在最佳条件下(0.1mL min(-1)流速)泵送环丙氟苄啶溶液,在18.8分钟的光反应器中具有最大停留​​时间。每4秒都采用UV和荧光光谱。 UV光谱从210〜400nm记录(Delta Lambda = 2.0nm),同时从372-620nm记录荧光光谱(Delta lambda = 1.7nm)。进行数据融合策略以分析所获得的光谱信号,并施加硬质和软多变量曲线分辨率(HS-MCR)以获得与环丙沙星及其主要降解产物相关的纯光谱和浓度谱,以及相应的动力率常数。以前,提出了光降解途径,考虑了通过纯软建模分析回收的浓度谱。 HS-MCR分析后获得的环丙沙星的速率常数分别为pH 7.0和9.0的0.0302 s(-1)和0.0322秒(-1)。反应途径和动力速率常数与参考书目中报道的那些密切一致,并且使用先前进行的HPLC分析。所提出的方法简单,快速,并且代表了用于研究光降解过程的HPLC更环保和更便宜的替代品。 (c)2018 Elsevier B.v.保留所有权利。

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