首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Derivatization and liquid chromatography-UV-tandem mass spectrometric analysis of perfluorinated carboxylic acids
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Derivatization and liquid chromatography-UV-tandem mass spectrometric analysis of perfluorinated carboxylic acids

机译:衍生化和液相色谱-全氟羧酸的紫外串联质谱分析

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The presence of perfluorocarboxylates (PFCAs) in the environment is of increasing concern due to their possible toxicity to humans and bioaccumulation in organisms. PFCAs are frequently found in river water, sediment and organisms and sometimes even in groundwater. In order to quantitatively determine these PFCAs, a fast derivatization coupled with a liquid chromatography-ultraviolet detector-electrospray ionization-tandem mass spectrometry (LC-UV-ESI-MS/MS) method was developed. The PFCAs were quantitatively converted to their corresponding phenacyl esters using p-bromophenacyl bromide as the derivatization reagent. Under optimized reaction conditions, the conversion yield of the PFCAs ranged from 86 to 92% with low %RSD. The typical derivatization product (p-bromophenacyl bromide perfluorooctanoate) was characterized by ~1H NMR, ~(13)C NMR, FT-IR and mass spectrometry. UPLC with a BEH C18 column and CAN/H _2O (8/2, v/v) as a mobile phase were used to separate the derivatives. The analytes were completely eluted within 6min and multidimensional detection using UV at 260nm and ESI-MRM in the negative ion mode were carried out. Bromide isotopic characteristic fragment ions appeared in the first Q1 scans, and four daughter ions of the MRMs at m/z [M-H-222] ~-, [M-H-250] ~-, [M-H-278] ~- and [M-H-316] ~- were used for quantification and confirmation. The mass spectral information ensured accurate identification of the analytes even when the sample matrices were complex. The method successfully eliminated the PFCAs background problems originating from polymeric parts in liquid chromatographic systems. The LODs of the method were lower than 5ngmL ~(-1), and the relative standard deviation (RSD%) values ranged from 5.2 to 9.8%. The method was successfully applied for the quantification of PFCAs in river water contaminated by industrial wastewater, and this indicated that the method was useful in the determination of PFCAs in environmental samples.
机译:由于环境中全氟羧酸盐(PFCA)对人体的潜在毒性和生物体内的生物蓄积性,因此日益引起人们的关注。 PFCA经常出现在河水,沉积物和生物中,有时甚至存在于地下水中。为了定量确定这些PFCA,开发了一种快速衍生化方法,该方法与液相色谱-紫外检测器-电喷雾电离串联质谱法(LC-UV-ESI-MS / MS)结合使用。使用对溴苯甲酰溴作为衍生试剂将PFCA定量转化为相应的苯甲酸酯。在优化的反应条件下,PFCA的转化率在86%到92%之间,而%RSD较低。通过〜1H NMR,〜(13)C NMR,FT-IR和质谱对典型的衍生产物(对溴苯甲基溴全氟辛酸酯)进行表征。使用带有BEH C18色谱柱和CAN / H _2O(8/2,v / v)作为流动相的UPLC分离衍生物。分析物在6分钟内被完全洗脱,并使用260nm的紫外线和负离子模式的ESI-MRM进行多维检测。溴化同位素特征碎片离子出现在第一个Q1扫描中,并且MRM的四个子离子分别处于m / z [MH-222]〜-,[MH-250]〜-,[MH-278]〜-和[MH- 316]〜-用于定量和确认。即使样品基质很复杂,质谱信息也可以确保对分析物的准确鉴定。该方法成功消除了由于液相色谱系统中的聚合物部件而引起的PFCAs背景问题。该方法的检测限低于5ngmL〜(-1),相对标准偏差(RSD%)值在5.2至9.8%之间。该方法已成功应用于工业废水污染的河水中全氟辛烷磺酸的定量分析,表明该方法可用于环境样品中全氟辛烷磺酸的测定。

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