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Recent Contributions Of Flame-sampling Molecular-beam Mass Spectrometry To A Fundamental Understanding Of Combustion Chemistry

机译:火焰采样分子束质谱技术对燃烧化学基础知识的最新贡献

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Flame-sampling molecular-beam mass spectrometry of premixed, laminar, low-pressure flat flames has been demonstrated to be an efficient tool to study combustion chemistry. In this technique, flame gases are sampled through a small opening in a quartz probe, and after formation of a molecular beam, all flame species are separated using mass spectrometry. The present review focuses on critical aspects of the experimental approach including probe sampling effects, different ionization processes, and mass separation procedures. The capability for isomer-resolved flame species measurements, achievable by employing tunable vacuum-ultraviolet radiation for single-photon ionization, has greatly benefited flame-sampling molecular-beam mass spectrometry. This review also offers an overview of recent combustion chemistry studies of flames fueled by hydrocarbons and oxygenates. The identity of a variety of intermediates in hydrocarbon flames, including resonantly stabilized radicals and closed-shell intermediates, is described, thus establishing a more detailed understanding of the fundamentals of molecular-weight growth processes. Finally, molecular-beam mass-spectrometric studies of reaction paths in flames of alcohols, ethers, and esters, which have been performed to support the development and validation of kinetic models for bio-derived alternative fuels, are reviewed.
机译:预混合,层流,低压平焰的火焰采样分子束质谱已被证明是研究燃烧化学的有效工具。在该技术中,通过石英探针中的小孔对火焰气体进行采样,并且在形成分子束之后,使用质谱法将所有火焰物种分离出来。本综述着重于实验方法的关键方面,包括探针采样效果,不同的电离过程和质量分离程序。通过使用可调谐的真空-紫外线辐射进行单光子电离,可以实现异构体分辨火焰物种的测量,极大地受益于火焰采样分子束质谱。这篇评论还概述了碳氢化合物和含氧化合物助燃的火焰的最新燃烧化学研究。描述了碳氢化合物火焰中各种中间体的身份,包括共振稳定的自由基和闭壳中间体,从而对分子量增长过程的基本原理有了更详细的了解。最后,对醇,醚和酯火焰中反应路径的分子束质谱研究进行了综述,以支持生物衍生代用燃料动力学模型的开发和验证。

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