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Online Laser Desorption-Multiphoton Postionization Mass Spectrometry of Individual Aerosol Particles: Molecular Source Indicators for Particles Emitted from Different Traffic-Related and Wood Combustion Sources

机译:单个气溶胶颗粒的在线激光解吸-多光子阳离子化质谱:不同交通相关和木材燃烧源排放的颗粒的分子源指示剂

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Direct inlet aerosol mass spectrometry plays an increasingly important role in applied and fundamental aerosol and nanoparticle research. Laser desorption/ionization (LDI) based techniques for single particle time-of-flight mass spectrometry (LDI-SP-TOFMS) are a promising approach in the chemical analysis of single aerosol particles, especially for the detection of inorganic species and distinction of particle classes. However, until now the detection of molecular organic compounds on a single particle basis has been difficult due to the high laser power densities which are required for the LDI process as well as due to the inherent matrix effects associated with this ionization technique. By the application of a two-step approach, where an IR desorption laser pulse is applied to perform a gentle desorption of organic material from the single particle surface and a second UV-laser performs the soft ionization of the desorbed species, this drawback of laser based single particles mass spectrometry can be overcome. The postionization of the desorbed molecules has been accomplished in this work by resonance enhanced multiphoton ionization (REMPI) using a KrF excimer laser (248 nm). REMPI allows an almost fragmentation free trace analysis of polycyclic aromatic hydrocarbons (PAHs) and their derivatives from individual single particles (laser desorption-REMPI postionization-single particle-time-of-flight mass spectrometry or LD-REMPI-SP-TOFMS). Crucial system parameters of the home-built aerosol mass spectrometer such as the power densities and the relative timing of both lasers were optimized with respect to the detectability of particle source specific organic signatures using well characterized standard particles. In a second step, the LD-REMPI-SP-TOFMS system was applied to analyze different real world aerosols (spruce wood combustion, gasoline car exhaust, beech wood combustion, and diesel car exhaust). It was possible to distinguish the particles from different sources by their molecular signature. Finally, exemplary ambient aerosol measurements have been carried out, which demonstrate the potential of the method for investigating urban aerosol and making contributions to source attribution studies.
机译:直接入口气溶胶质谱仪在应用和基础气溶胶和纳米颗粒研究中起着越来越重要的作用。基于激光解吸/电离(LDI)的单颗粒飞行时间质谱(LDI-SP-TOFMS)技术是对单个气溶胶颗粒进行化学分析的有前途的方法,特别是用于检测无机物和区分颗粒类。然而,由于LDI工艺所需的高激光功率密度以及与该电离技术相关的固有基质效应,到目前为止,以单粒子为基础的分子有机化合物的检测一直很困难。通过应用两步方法,其中施加IR解吸激光脉冲以从单个粒子表面进行有机材料的温和解吸,而第二个UV激光器对被解吸的物质进行软电离,这是激光的缺点基于单颗粒质谱的方法可以克服。解吸分子的后离子化已通过使用KrF准分子激光(248 nm)的共振增强多光子电离(REMPI)得以完成。 REMPI可以对单个单个颗粒中的多环芳烃(PAH)及其衍生物进行几乎无碎片的痕量分析(激光解吸-REMPI后离子化-单颗粒飞行时间质谱或LD-REMPI-SP-TOFMS)。相对于使用表征良好的标准粒子对粒子源特定有机特征的可检测性,优化了家用气溶胶质谱仪的关键系统参数,例如功率密度和两个激光器的相对定时。第二步,使用LD-REMPI-SP-TOFMS系统分析现实世界中的不同气溶胶(云杉木材燃烧,汽油车排气,山毛榉木材燃烧和柴油车排气)。可以通过它们的分子特征来区分不同来源的颗粒。最后,已经进行了示例性的环境气溶胶测量,这证明了该方法用于调查城市气溶胶并为来源归因研究做出贡献的潜力。

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