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Separation of molecular tracers sorbed onto atmospheric particulate matter by flash chromatography

机译:快速色谱法分离吸附在大气颗粒物上的分子示踪剂

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摘要

In to order increase sensitivity and to reduce the background induced by matrix effects, a method was developed that uses flash chromatography to separate various compounds present in atmospheric aerosol samples prior to their analysis with different analytical techniques (GC–MS, GC–FID, HPLC). For this purpose, flash chromatography using a 4 g silica gel column crossed by eluent at a flow rate of 20 mL min?1 was used. An eluent with enhanced polarity is needed to separate nonpolar (linear and branched alkanes), semipolar (PAH, nitro-PAH and cholesterol) and polar (methoxyphenols, alkanoic acids, and levoglucosan) compounds. Three combinations of solvents were used: hexane for the nonpolar fraction (F1), toluene/hexane for the semipolar fraction (F2) and dimethylformamide for the polar fraction (F3). The use of different eluents for each fraction allows separation of the sample to be accomplished with good repeatability and satisfying yields [85 ± 5% for F1, 81 ± 8% (PAHs), 89 ± 6% (nitro-PAHs) and 74 ± 7% (cholesterol) for F2 and 79 ± 7% (n-alkanoic acids), 40 ± 11% (methoxyphenols) and 77 ± 6% (levoglucosan) for F3]. The methoxyphenol yields were low due to losses during the concentration/evaporation step. This method was then applied to analyse the organic composition of particles collected at an urban site in Strasbourg (France).
机译:为了提高灵敏度并减少由基质效应引起的背景,开发了一种方法,该方法使用快速色谱法分离大气气溶胶样品中存在的各种化合物,然后再使用不同的分析技术(GC–MS,GC–FID,HPLC )。为此目的,使用快速色谱法,该色谱法使用4 g硅胶柱,洗脱液交叉,流速为20 mL min?1 。需要使用极性增强的洗脱液来分离非极性(线性和支链烷烃),半极性(PAH,硝基-PAH和胆固醇)和极性(甲氧基酚,链烷酸和左旋葡聚糖)化合物。使用了三种溶剂组合:非极性馏分(F1)为己烷,半极性馏分(F2)为甲苯/己烷,极性馏分(F3)为二甲基甲酰胺。每个馏分使用不同的洗脱液,可以实现良好的重复性和令人满意的分离度[F1:85±5%,81±8%(PAHs),89±6%(nitro-PAHs)和74± F2为7%(胆固醇),F3为79±7%(正链烷酸),40±11%(甲氧基苯酚)和77±6%(左葡聚糖)。由于浓缩/蒸发步骤中的损失,甲氧基苯酚的收率较低。然后将该方法应用于分析在法国史特拉斯堡的一个城市现场收集的颗粒的有机组成。

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  • 来源
    《Analytical and Bioanalytical Chemistry》 |2007年第5期|1855-1861|共7页
  • 作者单位

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Environnement Air TOTAL Centre de Recherche de Solaize BP 22 69360 Solaize France;

    Environnement Air TOTAL Centre de Recherche de Solaize BP 22 69360 Solaize France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

    Laboratoire de Physico-Chimie de l’Atmosphère Centre de Géochimie de la Surface UMR 7517 CNRS–Université Louis Pasteur 1 rue Blessig 67084 Strasbourg Cedex France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flash chromatography; Silica gel column; Separation; Organic aerosols;

    机译:快速色谱;硅胶柱;分离;有机气溶胶;

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