首页> 外文OA文献 >Hyphenation of a EC / OC Thermal-Optical Carbon Analyzer to Photo Ionization Time-of-Flight Mass Spectrometry: A New Off-Line Aerosol Mass Spectrometric Approach for Characterization of Primary and Secondary Particulate Matter
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Hyphenation of a EC / OC Thermal-Optical Carbon Analyzer to Photo Ionization Time-of-Flight Mass Spectrometry: A New Off-Line Aerosol Mass Spectrometric Approach for Characterization of Primary and Secondary Particulate Matter

机译:将EC / OC热光碳分析仪连接到光电离飞行时间质谱:一种新的离线气溶胶质谱法用于表征初级和次级颗粒物质

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摘要

Source apportionment and characterization of primary and secondary aerosols remains a challenging research field. In particular, the organic composition of primary particles and the formation mechanism of secondary organic aerosols (SOAs) warrant further investigations. Progress in this field is strongly connected to the development of novel analytical techniques. In this study an off-line aerosol mass spectrometric technique based on filter samples, a hyphenated thermal–optical analyzer photo-ionization time-of-flight mass spectrometer (PI-TOFMS) system, was developed. The approach extends the capability of the widely used particulate matter (PM) carbon analysis (for elemental / organic carbon, EC / OC) by enabling the investigation of evolved gaseous species with soft and selective (resonance enhanced multi-photon ionization, REMPI) and non-selective photo-ionization (single-photon ionization, SPI) techniques. SPI was tuned to be medium soft to achieve comparability with results obtained by the electron ionization aerosol mass spectrometer (AMS). Different PM samples including wood combustion emission samples, smog chamber samples from the reaction of ozone with different SOA precursors, and ambient samples taken at Ispra, Italy, in winter as well as in summer were tested. The EC / OC–PI-TOFMS technique increases the understanding of the processes during thermal–optical analysis and identifies marker substances for the source apportionment. Composition of oligomeric or polymeric species present in PM can be investigated by the analysis of the thermal breakdown products. In the case of wood combustion, in addition to the well-known markers at m/z ratios of 60 and 73, two new characteristic masses (m/z 70 and 98) have been revealed as potentially linked to biomass burning. All four masses were also the dominant signals in an ambient sample taken in winter time in Ispra, Italy, confirming the finding that wood burning for residential heating is a major source of PM in winter at this location. The summer sample from the same location showed no influence of wood burning, but seems to be dominated by SOAs, which was confirmed from the comparison with chamber experiment samples. The experiments conducted with terpenes as precursors showed characteristic masses at m/z 58 and 82, which were not observable in any other emission samples and could serve as a marker for SOA from terpenes.
机译:初级和次级气溶胶的来源分配和表征仍然是一个充满挑战的研究领域。特别是,一次颗粒的有机组成和二次有机气溶胶(SOA)的形成机理值得进一步研究。该领域的进展与新型分析技术的发展紧密相关。在这项研究中,开发了一种基于过滤器样品的离线气溶胶质谱技术,即一种联用的热光分析仪光电离飞行时间质谱仪(PI-TOFMS)系统。该方法通过研究具有软性和选择性性(共振增强型多光子电离,REMPI)的演化出的气态物种,扩展了广泛使用的颗粒物(PM)碳分析(针对元素/有机碳,EC / OC)的能力。非选择性光电离(单光子电离,SPI)技术。将SPI调整为中等软度,以实现与电子电离气溶胶质谱仪(AMS)获得的结果的可比性。测试了不同的PM样品,包括木材燃烧排放样品,臭氧与不同SOA前体反应产生的烟雾室样品,以及冬季和夏季在意大利Ispra采集的环境样品。 EC / OC-PI-TOFMS技术可增加对热光分析过程的了解,并识别用于源分配的标记物。 PM中存在的低聚物或聚合物种类的组成可以通过热分解产物的分析来研究。在木材燃烧的情况下,除了以m / z为60和73的著名标记外,还发现了两个新的特征质量(m / z 70和98)与生物质燃烧有潜在关系。在意大利Ispra冬季采集的环境样本中,所有四个质量块也是主要信号,证实了这一点的发现,即用于住宅取暖的木材燃烧是冬季PM的主要来源。来自同一地点的夏季样品没有显示出木材燃烧的影响,但似乎被SOA所占据,这与室内实验样品的比较证实了这一点。以萜烯为前体进行的实验显示出在m / z 58和82处的特征质量,这在任何其他排放样品中均无法观察到,并且可以用作萜烯SOA的标记。

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