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首页> 外文期刊>Analytica chimica acta >Liquid-liquid-liquid microextraction for the enrichment of poly cyclic aromatic hydrocarbon metabolites investigated with fluorescence spectroscopy and capillary electrophoresis
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Liquid-liquid-liquid microextraction for the enrichment of poly cyclic aromatic hydrocarbon metabolites investigated with fluorescence spectroscopy and capillary electrophoresis

机译:液-液-液微萃取富集多环芳烃代谢物的荧光光谱和毛细管电泳研究

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The extraction and pre-concentration of phenol,2-naphthol,and several hydroxyl polycyclic aromatic hydrocarbon(PAH)metabolites were investigated,using liquid-liquid-liquid microextraction(LLLME).The PAH metabolites are a very important class of compounds,and they have not been investigated previously by LLLME.For several of the hydroxyl PAH metabolites,the enrichment factors were small when using LLLME with an alkaline acceptor phase.Changing the acceptor phase to 1 -octanol,which gave a two-phase system,improved the enrichment factors significantly for several of the hydroxyl PAH metabolites.For example,the enrichment factor was improved by a factor of 68.5 for 3-hydroxybenzo[a]pyrene.Enrichment factors were investigated as a function of time and stirring rate.At about 55 min the enrichment factor reached a maximum for the two-phase system and at approximately 75 min for the three-phase microextraction system.However,a 30 min extraction time was used for most of the experiments.Also,fluorescence spectroscopy was used to determine the enrichment factors and the mass distribution of the solute between the phases.Fluorescence spectroscopy was very effective in determining the very small concentrations of the solute in the various phases.In addition,capillary electrophoresis and LLLME were combined to demonstrate the substantial enrichment of 2-naphthol by combining these two approaches.
机译:使用液-液-液微萃取(LLLME)研究了酚,2-萘酚和几种羟基多环芳烃(PAH)代谢物的提取和预浓缩。PAH代谢物是一类非常重要的化合物,它们LLLME以前没有研究过。对于几种羟基PAH代谢物,当使用带有碱性受体相的LLLME时,富集因子很小。将受体相改变为1-辛醇,得到了两相体系,改善了富集羟基PAH代谢产物的显着影响因素。例如,3-羟基苯并[a] py的富集因数提高了68.5。研究了富集因数随时间和搅拌速度的变化。在大约55分钟时富集因子在两相系统中达到最大值,在三相微萃取系统中达到约75分钟。但是,大多数实验使用30分钟的提取时间。荧光光谱法用于确定各相之间溶质的富集因子和质量分布。荧光光谱法在确定各相中非常小的溶质浓度时非常有效。此外,毛细管电泳和LLLME相结合来证明通过结合这两种方法,可大量富集2-萘酚。

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