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Nontarget Screening Exhibits a Seasonal Cycle of PM Organic Aerosol Composition in Beijing

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Date 2022 Mar 18
PMID 35302359
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Abstract

The molecular composition of atmospheric particulate matter (PM) in the urban environment is complex, and it remains a challenge to identify its sources and formation pathways. Here, we report the seasonal variation of the molecular composition of organic aerosols (OA), based on 172 PM filter samples collected in Beijing, China, from February 2018 to March 2019. We applied a hierarchical cluster analysis (HCA) on a large nontarget-screening data set and found a strong seasonal difference in the OA chemical composition. Molecular fingerprints of the major compound clusters exhibit a unique molecular pattern in the Van Krevelen-space. We found that summer OA in Beijing features a higher degree of oxidation and a higher proportion of organosulfates (OSs) in comparison to OA during wintertime, which exhibits a high contribution from (nitro-)aromatic compounds. OSs appeared with a high intensity in summer-haze conditions, indicating the importance of anthropogenic enhancement of secondary OA in summer Beijing. Furthermore, we quantified the contribution of the four main compound clusters to total OA using surrogate standards. With this approach, we are able to explain a small fraction of the OA (∼11-14%) monitored by the Time-of-Flight Aerosol Chemical Speciation Monitor (ToF-ACSM). However, we observe a strong correlation between the sum of the quantified clusters and OA measured by the ToF-ACSM, indicating that the identified clusters represent the major variability of OA seasonal cycles. This study highlights the potential of using nontarget screening in combination with HCA for gaining a better understanding of the molecular composition and the origin of OA in the urban environment.

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References
1.
Blair S, MacMillan A, Drozd G, Goldstein A, Chu R, Pasa-Tolic L . Molecular Characterization of Organosulfur Compounds in Biodiesel and Diesel Fuel Secondary Organic Aerosol. Environ Sci Technol. 2016; 51(1):119-127. DOI: 10.1021/acs.est.6b03304. View

2.
Lin P, Rincon A, Kalberer M, Yu J . Elemental composition of HULIS in the Pearl River Delta Region, China: results inferred from positive and negative electrospray high resolution mass spectrometric data. Environ Sci Technol. 2012; 46(14):7454-62. DOI: 10.1021/es300285d. View

3.
Wang Y, Ren J, Huang X, Tong R, Yu J . Synthesis of Four Monoterpene-Derived Organosulfates and Their Quantification in Atmospheric Aerosol Samples. Environ Sci Technol. 2017; 51(12):6791-6801. DOI: 10.1021/acs.est.7b01179. View

4.
Xie Q, Su S, Chen S, Zhang Q, Yue S, Zhao W . Molecular characterization of size-segregated organic aerosols in the urban boundary layer in wintertime Beijing by FT-ICR MS. Faraday Discuss. 2020; 226:457-478. DOI: 10.1039/d0fd00084a. View

5.
Zhang Y, Wang K, Tong H, Huang R, Hoffmann T . The maximum carbonyl ratio (MCR) as a new index for the structural classification of secondary organic aerosol components. Rapid Commun Mass Spectrom. 2021; 35(14):e9113. DOI: 10.1002/rcm.9113. View