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一种新型同步荧光光谱法结合荧光增敏作用,用于废水中依诺沙星、氧氟沙星和盐酸四环素残留的高灵敏和同时检测。

A novel synchronous fluorescence spectrometry combined with fluorescence sensitization for the highly sensitive and simultaneous detection of enoxacin, ofloxacin and tetracycline hydrochloride residues in wastewater.

机构信息

The School of Pharmacy, Fujian Medical University, Fuzhou, Fujian, 350000, China; Pharmaceutical and Medical Technology College of Putian University, Putian, Fujian, 351100, China.

Environmental and Biological Engineering College of Putian University, Putian, Fujian, 351100, China.

出版信息

Talanta. 2024 May 1;271:125707. doi: 10.1016/j.talanta.2024.125707. Epub 2024 Jan 23.

Abstract

The synergistic effect of sodium dodecyl sulfate (SDS) and Mg could significantly enhance the fluorescence intensity of enoxacin (ENO) at λ/λ = 269.2 nm/385.6 nm, ofloxacin (OFL) at λ/λ = 290.8 nm/466.2 nm and tetracycline hydrochloride (TCH) at λ/λ = 372.6 nm/514.8 nm. Moreover, when the wavelength difference (Δλ) was chosen 135 nm, the synchronous fluorescence spectra of the three antibiotic complexes could be well separated and the interference of the samples matrix were eliminated primely. Therefore, only one synchronous fluorescence scan was needed to simultaneously determine the three antibiotics. Based on these facts, a synchronous fluorescence spectrometry combining fluorescence sensitization for highly sensitive and selective determination of ENO, OFL and TCH residues in wastewater was developed for the first time. The experimental results showed that the concentrations of ENO, OFL and TCH in the range of 0.5-550 ng mL, 1-1500 ng mL and 10-5500 ng mL showed a good linear relationship with fluorescence intensity. The limits of detection were 0.0599 ng mL, 0.115 ng mL and 0.151 ng mL, respectively. The recoveries of the actual sample were 87.50%-99.99 %, 93.00%-98.50 % and 85.70%-98.42 %, respectively. Overall, the novel synchronous fluorescence spectrometry established in the experiment has the advantages of high sensitivity, good selectivity, fast detection speed and high accuracy. It has been successfully applied to the detection of residual amounts of ENO, OFL and TCH in wastewater with satisfactory results.

摘要

十二烷基硫酸钠(SDS)和 Mg 的协同作用可显著增强恩诺沙星(ENO)在 λ/λ=269.2nm/385.6nm、氧氟沙星(OFL)在 λ/λ=290.8nm/466.2nm 和盐酸四环素(TCH)在 λ/λ=372.6nm/514.8nm 的荧光强度。此外,当选择波长差(Δλ)为 135nm 时,三种抗生素配合物的同步荧光光谱可以很好地分离,并且可以有效地消除样品基质的干扰。因此,仅需进行一次同步荧光扫描即可同时测定三种抗生素。基于这些事实,首次建立了一种同步荧光光谱法,该方法结合荧光增敏作用,可用于高灵敏和选择性地测定废水中的 ENO、OFL 和 TCH 残留。实验结果表明,ENO、OFL 和 TCH 的浓度在 0.5-550ng/mL、1-1500ng/mL 和 10-5500ng/mL 范围内与荧光强度呈良好的线性关系。检出限分别为 0.0599ng/mL、0.115ng/mL 和 0.151ng/mL。实际样品的回收率为 87.50%-99.99%、93.00%-98.50%和 85.70%-98.42%。总体而言,实验中建立的新型同步荧光光谱法具有灵敏度高、选择性好、检测速度快、准确度高等优点。它已成功应用于废水中 ENO、OFL 和 TCH 残留量的检测,结果令人满意。

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