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Identification and Quantification of Aerosol Polar Oxygenated Compounds Bearing Carboxylic or Hydroxyl Groups. 1. Method Development

机译:带有羧基或羟基的气溶胶极性氧化化合物的鉴定和定量。 1.方法开发

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In this study, a new analytical technique was developed for the identification and quantification of multifunctional compounds containing simultaneously at least one hydroxyl or one carboxylic group, or both. This technique is based on derivatizing first the carboxylic group(s) of the multifunctional compound using an alcohol (e.g., methanol, 1-butanol) in the presence of a relatively strong Lewis acid (BF_(3)) as a catalyst. This esterification reaction quickly and quantitatively converts carboxylic acids to their ester forms. The second step is based on silylation of the ester compounds using bis(trimethylsilyl) trifluoroacetamide (BSTFA) as the derivatizing agent. For compounds bearing ketone groups in addition to carboxylic and hydroxyl groups, a third step was used based on PFBHA derivatization of the carbonyls. Different parameters including temperature, reaction time, and effect due to artifacts were optimized. A GC/MS in EI and in methane-CI mode was used for the analysis of these compounds. The new approach was tested on a number of multifunctional compounds. The interpretation of their EI (70 eV) and CI mass spectra shows that critical information is gained leading to unambiguous identification of unknown compounds. For example, when derivatized only with BF_(3)-methanol, their mass spectra comprise primary ions at m/z M~(·+)+1, M~(·+)+29, and M~(·+)-31 for compounds bearing only carboxylic groups and M~(·+)+1, M~(·+)+29, M~(·+)-31, and M~(+·)-17 for those bearing hydroxyl and carboxylic groups. However, when a second derivatization (BSTFA) was used, compounds bearing hydroxyl and carboxylic groups simultaneously show, in addition to the ions observed before, ions at m/z M~(·+)+73, M~(·+)-15, M~(·+)-59, M~(·+)-75, M~(·+)-89, and 73. To the best of our knowledge, this technique describes systematically for the first time a method for identifying multifunctional oxygenated compounds containing simultaneously one or more hydroxyl and carboxylic acid groups.
机译:在这项研究中,开发了一种新的分析技术,用于鉴定和定量同时包含至少一个羟基或一个羧基或两者的多功能化合物。该技术基于在相对强的路易斯酸(BF_(3))作为催化剂存在下,首先使用醇(例如甲醇,1-丁醇)使多官能化合物的羧基衍生化。该酯化反应快速且定量地将羧酸转化为其酯形式。第二步基于使用双(三甲基甲硅烷基)三氟乙酰胺(BSTFA)作为衍生剂对酯化合物进行甲硅烷基化的步骤。对于除了羧基和羟基外还带有酮基的化合物,基于羰基的PFBHA衍生化,使用第三步。优化了不同的参数,包括温度,反应时间和因伪影引起的影响。 EI和甲烷-CI模式下的GC / MS用于分析这些化合物。该新方法已在多种多功能化合物上进行了测试。对它们的EI(70 eV)和CI质谱的解释表明,获得了关键信息,从而可以明确鉴定未知化合物。例如,当仅用BF_(3)-甲醇衍生时,它们的质谱包括在m / z M〜(·+)+ 1,M〜(·+)+ 29和M〜(·+)-处的一次离子。对于仅带有羧基的化合物为31,对于带有羟基和羧基的化合物,M〜(·+)+ 1,M〜(·+)+ 29,M〜(·+)-31和M〜(+·-17)组。但是,当使用二次衍生化(BSTFA)时,除了之前观察到的离子外,带有羟基和羧基的化合物同时显示m / z M〜(·+)+ 73,M〜(·+)- 15,M〜(·+)-59,M〜(·+)-75,M〜(·+)-89和73。据我们所知,该技术首次系统地描述了一种鉴定同时含有一个或多个羟基和羧酸基团的多官能氧化化合物。

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