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Online Aerosol Chemical Characterization by Extractive Electrospray lonization-Ultrahigh-Resolution Mass Spectrometry (EESI-Orbitrap)

机译:萃取电喷雾电离-超高分辨率质谱(EESI-Orbitrap)在线气溶胶化学表征

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Current mass spectrometry techniques for the online measurement of organic aerosol (OA) composition are subjected to either thermal/ionization-induced artifacts or limited mass resolving power, hindering accurate molecular characterization. Here, we combined the soft ionization capability of extractive electrospray ionization (EESI) and the ultrahigh mass resolution of Orbitrap for real-time, near-molecular characterization of OAs. Detection limits as low as tens of ng m~(-3) with linearity up to hundreds of μg m~(-3) at 0.2 Hz time resolution were observed for single- and mixed-component calibrations. The performance of the EESI-Orbitrap system was further evaluated with laboratory-generated secondary OAs (SOAs) and filter extracts of ambient particulate matter. The high mass accuracy and resolution (140 000 at m/z 200) of the EESI-Orbitrap system enable unambiguous identification of the aerosol components' molecular composition and allow a clear separation between adjacent peaks, which would be significantly overlapping if a medium-resolution (20 000) mass analyzer was used. Furthermore, the tandem mass spectrometry (MS ) capability provides valuable insights into the compound structure. For instance, the MS2 analysis of ambient OA samples and lab-generated biogenic SOAs points to specific SOA precursors in ambient air among a range of possible isomers based on fingerprint fragment ions. Overall, this newly developed and characterized EESI-Orbitrap system will advance our understanding of the formation and evolution of atmospheric aerosols.
机译:当前用于在线测量有机气溶胶(OA)成分的质谱技术会经受热/电离引起的伪影或有限的质量分辨能力,从而阻碍了精确的分子表征。在这里,我们结合了萃取电喷雾电离(EESI)的软电离功能和Orbitrap的超高质量分辨率,可对OA进行实时,近分子表征。对于单组份和混合组份校准,观察到的检出限低至数十ng m〜(-3),线性度高达数百μgm〜(-3),时间分辨率为0.2 Hz。 EESI-Orbitrap系统的性能通过实验室生成的二次OA(SOA)和过滤器提取的环境颗粒物进行了进一步评估。 EESI-Orbitrap系统具有很高的质量精度和分辨率(在m / z 200时为140000),可以清楚地识别气溶胶成分的分子组成,并可以清楚地分离相邻峰之间的距离,如果采用中等分辨率,则可能存在明显的重叠使用(20000)质量分析仪。此外,串联质谱(MS)功能为化合物结构提供了宝贵的见解。例如,对环境OA样品和实验室生成的生物SOA的MS2分析指出,在基于指纹碎片离子的一系列可能的异构体中,环境空气中的特定SOA前体。总体而言,这个新开发并具有特征的EESI-Orbitrap系统将增进我们对大气气溶胶形成和演化的理解。

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