CNRS-ICARE , 45100 Orleans , France.
IONICON Analytik GmbH , 6020 Innsbruck , Austria.
Anal Chem. 2019 Oct 15;91(20):12619-12624. doi: 10.1021/acs.analchem.9b02949. Epub 2019 Sep 30.
We have recently shown in this journal (Müller et al. 2017 , 89 , 10889 - 10897 ) how a proton-transfer-reaction mass spectrometry (PTR-MS) analyzer measured particulate organic matter in urban atmospheres using the "emical nalysis of Aeosol line" (CHARON) inlet. Our initial CHARON studies did not take into account fragmentation of protonated analyte molecules, which introduced a small but significant negative bias in the determination of bulk organic aerosol parameters. Herein, we studied the ionic fragmentation of 26 oxidized organic compounds typically found in atmospheric particles. This allowed us to derive a correction algorithm for the determination of the bulk organic mass concentration, , the bulk-average hydrogen-to-carbon ratio, (H:C), the bulk-average oxygen-to-carbon ratio, (O:C), and the bulk-average molecular formula, MF. The correction algorithm was validated against AMS data using two sets of published data. Finally, we determined MF of particles generated from the reaction of α-pinene and ozone and compared and discussed the results in relation to the literature.
我们最近在本刊(Müller 等人,2017,89,10889-10897)中展示了质子转移反应质谱(PTR-MS)分析仪如何使用“气溶胶线化学分析”(CHARON)进样器测量城市大气中的颗粒有机物。我们最初的 CHARON 研究没有考虑到质子化分析物分子的碎裂,这导致在确定有机气溶胶参数时存在一个小但显著的负偏差。在此,我们研究了 26 种通常存在于大气颗粒中的氧化有机物的离子碎裂。这使我们能够为确定有机质量浓度、、平均氢碳比 (H:C)、平均氧碳比 (O:C) 和平均分子公式 MF 得出一个校正算法。我们使用两组已发表的数据对校正算法进行了与 AMS 数据的验证。最后,我们确定了由α-蒎烯和臭氧反应生成的颗粒的 MF,并将结果与文献进行了比较和讨论。