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荧光光谱法与化学计量学:一种监测氟喹诺酮混合物降解的简单易行方法。

Fluorescence Spectroscopy and Chemometrics: A Simple and Easy Way for the Monitoring of Fluoroquinolone Mixture Degradation.

作者信息

Sciscenko Iván, Thị Mỹ Hắng Hoàng, Escudero-Oñate Carlos, Oller Isabel, Arques Antonio

机构信息

Departamento de Ingeniería Textil y Papelera, Universitat Politècnica de València (UPV), 46022 Valencia, Spain.

Hue University of Sciences, 530000 Thùa Thiên Huê, Vietnam.

出版信息

ACS Omega. 2021 Feb 9;6(7):4663-4671. doi: 10.1021/acsomega.0c05370. eCollection 2021 Feb 23.

Abstract

In this work, fluorescence excitation-emission matrices (EEMs), in combination with the chemometric tool and parallel factor analysis (PARAFAC), have been proposed as an unexplored methodology to follow the removal of the fluorescent contaminants of emerging concern, fluoroquinolones (FQs). Ofloxacin, enrofloxacin, and sarafloxacin were degraded by different advanced oxidation processes employing simulated sunlight (ν): photolysis, HO/ν, and photo-Fenton. All experiments were performed in ultrapure water at three different pH values: 2.8, 5.0, and 7.0. With the obvious advantage of multivariate analysis methods, EEM-PARAFAC allowed the monitoring of degradation from the overall substances (original and formed ones) through simultaneous, rapid, and cost-efficient fluorescence spectroscopy determinations. A five-component model was found to best fit the experimental data, allowing us to (i) describe the decay of the fluorescence signals of the three parent pollutants, (ii) follow the kinetics profile of FQ-like byproducts with similar EEM fingerprints than the original FQs, and (iii) observe the formation of two families of reaction intermediates with completely different EEMs. Results were finally correlated with high pressure liquid chromatography, total organic carbon, and toxicity tests on , showing good agreement with all the studied techniques.

摘要

在本研究中,荧光激发-发射矩阵(EEMs)结合化学计量工具和平行因子分析(PARAFAC),被提出作为一种尚未探索的方法,用于跟踪新兴关注的荧光污染物氟喹诺酮类(FQs)的去除情况。氧氟沙星、恩诺沙星和沙拉沙星通过采用模拟太阳光(ν)的不同高级氧化过程进行降解:光解、HO/ν和光芬顿反应。所有实验均在超纯水中,于三个不同的pH值(2.8、5.0和7.0)下进行。凭借多元分析方法的显著优势,EEM-PARAFAC能够通过同步、快速且经济高效的荧光光谱测定,监测整体物质(原始物质和生成物质)的降解情况。发现一个五组分模型最能拟合实验数据,使我们能够:(i)描述三种母体污染物荧光信号的衰减;(ii)跟踪具有与原始FQs相似EEM指纹的类FQ副产物的动力学曲线;(iii)观察形成具有完全不同EEMs的两类反应中间体。最终将结果与高压液相色谱、总有机碳以及对……的毒性测试相关联,结果表明与所有研究技术均具有良好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2935/7905809/c4d726d110cf/ao0c05370_0002.jpg

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