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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Single Particle Analysis of Secondary Organic Aerosols Formed from 1,4-Cyclohexadiene Ozonolysis Using a Laser-Ionization Single-Particle Aerosol Mass Spectrometer
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Single Particle Analysis of Secondary Organic Aerosols Formed from 1,4-Cyclohexadiene Ozonolysis Using a Laser-Ionization Single-Particle Aerosol Mass Spectrometer

机译:1,4-环己二烯臭氧分解形成的次级有机气溶胶的单粒子分析,使用激光电离单颗粒气溶胶质谱仪

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摘要

Real-time analysis of secondary organic aerosol (SOA) particles formed from 1,4-cyclohexadiene (CHD) ozonolysis in a smog chamber was performed using a laser-ionization single-particle aerosol mass spectrometer (LISPA-MS). The instrument can be used to obtain both the size and chemical compositions of individual aerosol particles with a high time-resolution (≈ 2 s at the maximum). Both positive- and negative-ion mass spectra can be obtained by changing the voltage polarity of the instrument. The negative-ion spectra of the SOA particles provided important information about the chemical compositions of the SOA particles. In the negative-ion spectra, intense mass peaks were determined to correspond to ions with carboxyl and aldehyde groups. The signal intensities of the intense mass peaks from compounds with carboxyl groups were higher than those from compounds with aldehyde groups as a function of the particle size. The peaks suggest that the SOA particles contain more oxygenated organic compounds as the particle size increases, namely, the chemical compositions of the SOA particles vary as a function of the particle size. We demonstrated that the real-time single-particle analysis of SOA particles by using the LISPA-MS technique can be used to clarify the formation and transformation processes of SOA particles in smog chambers.
机译:使用激光电离单颗粒气溶胶质谱仪(LISPA-MS)对烟雾室中的1,4-环己二烯(CHD)臭氧分解形成的次级有机气溶胶(SOA)颗粒进行了实时分析。该仪器可用于以高时间分辨率(最大≈2 s)获得单个气溶胶颗粒的尺寸和化学成分。可以通过更改仪器的电压极性来获得正负离子质谱图。 SOA颗粒的负离子光谱提供了有关SOA颗粒化学组成的重要信息。在负离子光谱中,确定了强烈的质量峰以对应于带有羧基和醛基的离子。具有羧基的化合物的强质量峰的信号强度比具有醛基的化合物的强质量峰的信号强度高,这取决于粒径。峰表明,随着粒度的增加,SOA颗粒包含更多的氧化有机化合物,即,SOA颗粒的化学组成随粒度而变化。我们证明了通过使用LISPA-MS技术对SOA颗粒进行实时单颗粒分析可用于阐明烟雾室中SOA颗粒的形成和转化过程。

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