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阿尔法蒎烯臭氧分解反应的极紫外自由电子激光光电离质谱研究

Vacuum Ultraviolet Free-Electron Laser Photoionization Mass Spectrometry of Alpha-pinene Ozonolysis

  • 摘要: 阿尔法蒎烯是大气中含量最高的自然源萜类挥发性有机物,其臭氧化分解反应会产生大量的反应中间体和产物,精确表征这些物种被认为是大气化学最前沿、最具挑战性的课题之一. 本文利用极紫外自由电子激光光电离质谱方法,研究了阿尔法蒎烯的臭氧分解反应机理. 该反应是在2立方米的烟雾箱中进行,利用气动透镜把产生的气溶胶传输到质谱探测腔室,利用极紫外自由电子激光对气溶胶进行单光子软电离,测得了常规实验方法难以得到的飞行时间质谱,发现了一系列新物种. 与量子化学理论计算相结合,揭示了这些新物种的反应机理. 这些研究结果从分子水平上揭示了蒎烯的臭氧分解反应机制,有助于理解大气雾霾微观机理.

     

    Abstract: \alpha-pinene is the most abundant monoterpene that represents an important family of volatile organic compounds. Molecular identification of key transient compounds during the \alpha-pinene ozonolysis has been proven to be a challenging experimental target because of a large number of intermediates and products involved. Here we exploit the recently developed hybrid instruments that integrate aerosol mass spectrometry with a vacuum ultraviolet free-electron laser to study the \alpha-pinene ozonolysis. The experiments of \alpha-pinene ozonolysis are performed in an indoor smog chamber, with reactor having a volume of 2 m^3 which is made of fluorinated ethylene propylene film. Distinct mass spectral peaks provide direct experimental signatures of previously unseen compounds produced from the reaction of \alpha-pinene with O_3. With the aid of quantum chemical calculations, plausible mechanisms for the formation of these new compounds are proposed. These findings provide crucial information on fundamental understanding of the initial steps of \alpha-pinene oxidation and the subsequent processes of new particle formation.

     

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