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首页> 外文期刊>Environmental Science & Technology: ES&T >Analysis of airborne carboxylic acids and phenols as their pentafluorobenzyl derivatives: gas chromatography/ion trap mass spectrometry with a novel chemical ionization reagent, PFBOH
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Analysis of airborne carboxylic acids and phenols as their pentafluorobenzyl derivatives: gas chromatography/ion trap mass spectrometry with a novel chemical ionization reagent, PFBOH

机译:Analysis of airborne carboxylic acids and phenols as their pentafluorobenzyl derivatives: gas chromatography/ion trap mass spectrometry with a novel chemical ionization reagent, PFBOH

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摘要

The complex photochemical transformations of biogenic hydrocarbons such as isoprene and of anthropogenic hydrocarbons such as aromatics are an important source of carboxylic acids in the troposphere. The identification of unknown carboxylic acidscan be difficult, however, due to the lack of standards as well as poor sensitivity and lack of selectivity of existing techniques. In this study, we describe the development of a method to analyze airborne carboxylic acids using derivatization withpentafluorobenzyl bromide (PFBBr) followed by capillary gas chromatography/ion trap mass spectrometry (GC/ITMS) analysis. In addition to the typical electron impact ionization (EI) and methane chemical ionization (CI) mass spectra of pentafluorobenzylderivatives, we describe the use of pentafluorobenzyl alcohol (PFBOH) as a novel reagent gas for CIMS. Pentafluorobenzyl ions (m/z = 181) were produced at reduced pressure (1×10{sup}-5 -2×10{sup}-5 Torr) from PFBOH gas, and the resulting CIMS werecharacterized by the predominance of the M + 181{sup}+ ions. The carboxylic acid products in the oxidation of isoprene from indoor and outdoor smog chamber experiments were analyzed using the described PFBBr GC/ITMS method. The formation of methacrylicacid in an isoprene/O{sup}3 reaction was demonstrated experimentally for the first time, and acrylic acid, one of the U.S. EPA 189 Hazardous Air Pollutants, is first reported here as an isoprene oxidation product. In other outdoor toluene/NO{sub}x chamber experiments, we detected a series of carboxylic acids and various phenolic compounds using this method.

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