首页> 外文期刊>Analytical methods >Salting-out induced liquid–liquid microextraction based on the system of acetonitrile/magnesium sulfate for trace-level quantitative analysis of fluoroquinolones in water, food and biological matrices by high-performance liquid chromatography with a fluorescence detector
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Salting-out induced liquid–liquid microextraction based on the system of acetonitrile/magnesium sulfate for trace-level quantitative analysis of fluoroquinolones in water, food and biological matrices by high-performance liquid chromatography with a fluorescence detector

机译:基于乙腈/硫酸镁系统的盐析诱导液液微萃取,用于高效液相色谱和荧光检测器的痕量定量分析水,食品和生物基质中的氟喹诺酮

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A convenient, robust and economical salting-out induced liquida€“liquid microextraction (SILLME) method coupled with high-performance liquid chromatography/fluorescence detector (HPLC/FLD) for sample preparation, extraction and trace-level quantitative determination of six fluoroquinolones (FQs) in different samples was developed. The critical factors that influence the extraction efficiencies of the target analytes, such as the type of extraction solvent and salting-out reagent, the ratio of extraction solvent to salt, pH value and extraction time, were investigated. The system of acetonitrile/magnesium sulfate showed good extraction efficiencies for the target analytes. Under optimum conditions, the correlation coefficient (r2) was obtained within a range of 0.9990a€“0.9998 by spiking ultrapure water over a range of 0.002a€“0.100 ??g mLa?’1. Excellent sensitivity was attained with limits of detection (LODs, S/N = 3) ranging from 0.07a€“0.41 ng mLa?’1, 0.09a€“0.62 ng mLa?’1, 0.48a€“2.49 ??g kga?’1, 0.80a€“5.00 ng mLa?’1, 0.78a€“5.58 ng mLa?’1 and 0.40a€“5.30 ??g kga?’1 for ultrapure water, field water, honey, milk, swine plasma and muscle, respectively. While precision with inter- and intra-day relative standard deviations (RSDs, n = 5) for ultrapure water were observed in the range of 0.4a€“4.0% and 1.3a€“6.8%, respectively. Finally, the developed method was successfully applied to all of the abovementioned matrices as a promising method for the analysis of FQs.
机译:一种方便,耐用,经济的盐析诱导液体微萃取(SILLME)方法,结合高效液相色谱/荧光检测器(HPLC / FLD),用于样品制备,萃取和痕量定量测定六种氟喹诺酮(FQ) )在不同的样品中被开发出来。研究了影响目标分析物提取效率的关键因素,例如提取溶剂和盐析试剂的类型,提取溶剂与盐的比例,pH值和提取时间。乙腈/硫酸镁系统对目标分析物具有良好的萃取效率。在最佳条件下,通过在0.002a×0.100g gmLa·1的范围内加超纯水,可在0.9990a×0.9998的范围内获得相关系数(r2)。检出限(LOD,S / N = 3)达到0.07a“ 0.41 ng mLa'1,0.09a” 0.62 ng mLa?'1,0.48a“ 2.49?g kga 1,'0.80a€5.00 ng mLa'1,0.78a'5.58 ng mLa?1和0.40a'5.30 g kga?'1用于超纯水,野外用水,蜂蜜,牛奶,猪血浆和肌肉。而超纯水的日间和日间相对标准偏差(RSDs,n = 5)的精度分别为0.4a?4.0%和1.3a?6.8%。最后,所开发的方法已成功地应用于所有上述矩阵,成为分析FQ的有前途的方法。

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