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首页> 外文期刊>Analytical chemistry >Baseline-Corrected Second-Order Derivative Electroanalysis Combined With Ultrasound-Assisted Liquid-Liquid Microextraction: Simultaneous Quantification of Fluoroquinolones at Low Levels
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Baseline-Corrected Second-Order Derivative Electroanalysis Combined With Ultrasound-Assisted Liquid-Liquid Microextraction: Simultaneous Quantification of Fluoroquinolones at Low Levels

机译:基线校正的二阶导数电分析与超声辅助的液体微萃取相结合:氟喹诺酮类药物的同时低含量定量

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摘要

A baseline-corrected second-order derivative procedure and a miniaturized sample preparation based on low-density solvent and ultrasound-assisted liquid-liquid microextraction (LDS-UA-LLME) was combined to provide the simultaneous electroanalysis of three fluoroquinolones (FQ) as emerging contaminants (ECs). The enhanced mathematical processing provided the best separation with an accurate measurement of the overlapping peaks during the simultaneous electro-oxidation of target FQs that were directly dropped on the surface of carbon nanofiber-modified screen printed electrodes. The adapted LDS-UA-LLME protocol was the key step involved in the sample preparation, which preconcentrate target analytes from diluted tap water samples with an enrichment factor of around 80x, allowing their quantification at trace levels. This combined feature demonstrated the unique application of an electroanalytical technique for the simultaneous electroanalysis of three FQs in spiked tap water samples, with recovery values remarkably close to 100%.
机译:结合基线校正的二阶导数方法和基于低密度溶剂和超声辅助液-液微萃取(LDS-UA-LLME)的微型样品制备方法,以同时对新兴的三种氟喹诺酮(FQ)进行电分析污染物(EC)。增强的数学处理提供了最佳分离效果,同时可以精确测量目标FQ的同时电氧化过程中的重叠峰,这些目标FQ直接滴在碳纳米纤维修饰的丝网印刷电极的表面上。修改后的LDS-UA-LLME规程是样品制备中的关键步骤,它可以从稀释的自来水样品中预浓缩目标分析物,其富集系数约为80倍,从而可以痕量定量。这一综合功能证明了电分析技术在同时加标自来水样品中的三个FQ的同时进行电分析的独特应用,回收率明显接近100%。

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