首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Molecular profiling of naphthenic acids in technical mixtures and oil sands process-affected water using polar reversed-phase liquid chromatography-mass spectrometry
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Molecular profiling of naphthenic acids in technical mixtures and oil sands process-affected water using polar reversed-phase liquid chromatography-mass spectrometry

机译:使用极性反相液相色谱 - 质谱法测定的技术混合物和油砂中环烷酸中环酸的分子谱分析

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In this work, a reversed-phase ultra-HPLC (UHPLC) ultrahigh resolution MS (UHRMS) method was evaluated for the comprehensive profiling of NAs containing two O atoms in each molecule (O2NAs; general formula CnH2n+zO2, where n is the number of carbon atoms and z represents hydrogen deficiency). Using a polar cyanopropyl-bonded phase column and negative-ion electrospray ionization mass spectrometric detection at 120,000 FWHM(m/z 400), 187 and 226 O2NA species were found in two naphthenic acid technical mixtures, and 424 and 198 species with molecular formulas corresponding to O2NAs were found in two oil sands process-affected water samples (one from a surface mining operation and the other from a steam-assisted gravity drainage operation), respectively. To our knowledge, these are the highest numbers of molecular compositions of O2NAs that have been profiled thus far in environmental samples. Assignments were based on accurate mass measurements (<= 3 ppm) combined with rational molecular formula generation, correlation of chromatographic behavior of O2NA homologues with their elemental compositions, and confirmation with carboxyl group-specific chemical derivatization using 3-nitrophenylhydrazine. Application of this UHPLC-UHRMS method to the quantitation of O2NAs in the surfacemining operation-derived water sample showed excellent linearity (R-2 = 0.9999) with external calibration, a linear range of 256-fold in concentration, and quantitation accuracies of 64.9 and 69.4% at two "standard substance" spiking levels.
机译:在这项工作中,评估了反相超高HPLC(UHPLC)超高分辨率MS(UHRMS)方法,用于在每种分子中含有两个O原子的NAS综合分析(O2NA;通式CNH2N + ZO2,其中N是数字碳原子和Z代表缺氧缺陷)。使用极性氰基丙基键合相塔和负离子电喷雾电离质谱检测在120,000 fwhm(m / z 400),187和226 o2na物种中,在两个环烷酸技术混合物中发现,424和198种,其中分子公式对应分别在两个油砂过程中发现O2NAS受影响的水样(来自表面挖掘操作之一,另一个来自蒸汽辅助重力排水操作)。据我们所知,这些是迄今为止在环境样品中突出的O2NA的最多分子组合物。作业基于精确的质量测量(<= 3 ppm)与合理的分子式产生结合,与其元素组合物的O2NA同源物的色谱行为的相关性,并使用3-硝基苯基肼与羧基特异性化学衍生化的确认。这种UHPLC-UHRMS方法在表面衍生的水样中定量O2NA的定量,显示出优异的线性度(R-2 = 0.9999),外部校准,浓度为256倍的线性范围,以及64.9的定量精度。两个“标准物质”尖峰水平为69.4%。

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