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采用加热雾化器接口液体引入常压化学电离质谱法对火焰生成的 C10 至 C160 多环芳烃进行表征。

Characterization of flame-generated C10 to C 160 polycyclic aromatic hydrocarbons by atmospheric-pressure chemical ionization mass spectrometry with liquid introduction via heated nebulizer interface.

机构信息

Center for Environmental Health Sciences, Core Laboratory in Analytical Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Room 20C-032, 02139, Cambridge, MA.

出版信息

J Am Soc Mass Spectrom. 1996 Mar;7(3):276-86. doi: 10.1016/1044-0305(95)00651-6.

Abstract

Complex mixtures of polycyclic aromatic hydrocarbons (PAHs) generated from fuel-rich combustion of ethylene-naphthalene mixtures in a jet-stirred-plug-flow reactor were chemically characterized by combined mass spectrometric techniques to yield product composition data that cover the molecular mass region from simple PAHs (naphthalene, 128 u) to large molecules comparable in molecular size (1792 u) to nanoparticles of soot. Two techniques based on atmospheric-pressure chemical ionization mass spectrometry (APCI-MS) were investigated: (1) APCI-MS combined with high-performance liquid chromatography through a heated nebulizer interface was found suitable for PAHs up to C36 (448 u). (2) For the characterization of larger PAHs beyond C36, direct liquid introduction (DLI) of sample into an atmospheric-pressure chemical ionization mass spectrometer through a heated nebulizer gave protonated molecular ions for PAHs over the m/z 400-2000 range. Although unequivocal elemental composition information is unattainable from the unit-resolution DLI/APCI-MS data, by starting with structural data from identified C16 to C32 PAHs, and applying PAH molecular growth principles, it was possible to generate PAH molecular maps from the DLI/APCI-MS data from which values for the elemental composition could be derived for all major peaks.

摘要

在射流搅拌管流反应器中,富燃料燃烧乙烯-萘混合物产生的复杂多环芳烃(PAH)混合物,通过组合质谱技术进行了化学表征,得到了涵盖从简单 PAH(萘,128 u)到与 soot 纳米颗粒大小相当的大分子(1792 u)的分子质量区域的产物组成数据。研究了两种基于大气压化学电离质谱(APCI-MS)的技术:(1)通过加热雾化器接口与高效液相色谱结合的 APCI-MS 适用于高达 C36(448 u)的 PAH。(2)对于 C36 以上更大的 PAH 的表征,通过加热雾化器将样品直接引入大气压化学电离质谱,可以得到 m/z 400-2000 范围内 PAH 的质子化分子离子。尽管从单位分辨率 DLI/APCI-MS 数据无法获得明确的元素组成信息,但通过从鉴定的 C16 到 C32 PAH 的结构数据开始,并应用 PAH 分子生长原理,从 DLI/APCI-MS 数据生成 PAH 分子图谱,从中可以得出所有主要峰的元素组成值。

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