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Comparison of aqueous secondary organic aerosol (aqSOA) product distributions from guaiacol oxidation by non-phenolic and phenolic methoxybenzaldehydes as photosensitizers in the absence and presence of ammonium nitrate
Mabato, Beatrix Rosette Go1,2; Li, Yong Jie3; Huang, Dan Dan4; Wang, Yalin3; Chan, Chak K.1,2,5
2023-03-02
Source PublicationATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
Volume23Issue:4Pages:2859-2875
Abstract

Aromatic carbonyls (e.g., methoxybenzaldehydes), an important class of photosensitizers, are abundant in the atmosphere. Photosensitization and nitrate-mediated photo-oxidation can occur simultaneously, yet studies about their interactions, particularly for aqueous secondary organic aerosol (aqSOA) formation, remain limited. This study compared non-phenolic (3,4-dimethoxybenzaldehyde, DMB) and phenolic (vanillin, VL) methoxybenzaldehydes as photosensitizers for aqSOA formation via guaiacol (GUA) oxidation in the absence and presence of ammonium nitrate (AN) under atmospherically relevant cloud and fog conditions. GUA oxidation by triplet excited states of DMB (3DMBg-) (GUAg+gDMB) was g1/4g4 times faster and exhibited greater light absorption than oxidation by 3VLg- (GUAg+gVL). Both GUAg+gDMB and GUAg+gVL formed aqSOA composed of oligomers, functionalized monomers, oxygenated ring-opening species, and N-containing products in the presence of AN. The observation of N-heterocycles such as imidazoles indicates the participation of ammonium in the reactions. The majority of generated aqSOA comprises potential brown carbon (BrC) chromophores. Oligomerization and functionalization dominated in GUAg+gDMB and GUAg+gVL, but functionalization appeared to be more important in GUAg+gVL due to contributions from VL itself. AN did not significantly affect the oxidation kinetics, but it had distinct effects on the product distributions, likely due to differences in the photosensitizing abilities and structural features of DMB and VL. In particular, the more extensive fragmentation in GUAg+gDMB than in GUAg+gVL likely generated more N-containing products in GUAg+gDMBg+gAN. In GUAg+gVLg+gAN, the increased oligomers may be due to VL-derived phenoxy radicals induced by ĝ «OH or ĝ «NO2 from nitrate photolysis. Furthermore, increased nitrated products observed in the presence of both DMB or VL and AN than in AN alone imply that photosensitized reactions may promote nitration. This work demonstrates how the structural features of photosensitizers affect aqSOA formation via non-carbonyl phenol oxidation. Potential interactions between photosensitization and AN photolysis were also elucidated. These findings facilitate a better understanding of photosensitized aqSOA formation and highlight the importance of AN photolysis in these reactions.

DOI10.5194/acp-23-2859-2023
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaEnvironmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
WOS SubjectEnvironmental Sciences ; Meteorology & Atmospheric Sciences
WOS IDWOS:000942470700001
PublisherCOPERNICUS GESELLSCHAFT MBH, BAHNHOFSALLEE 1E, GOTTINGEN 37081, GERMANY
Scopus ID2-s2.0-85149485474
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Document TypeJournal article
CollectionFaculty of Science and Technology
DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING
Corresponding AuthorChan, Chak K.
Affiliation1.School of Energy and Environment, City University of Hong Kong, Kowloon, Hong Kong
2.City University of Hong Kong Shenzhen Research Institute, Shenzhen, 518057, China
3.Department of Civil and Environmental Engineering, Centre for Regional Oceans, Faculty of Science and Technology, University of Macau, Taipa, 999078, Macao
4.State Environ. Protect. Key Lab. of Formation and Prevention of the Urban Air Pollution Complex, Shanghai Academy of Environmental Sciences, Shanghai, 200233, China
5.Low-Carbon and Climate Impact Research Centre of School of Energy and Environment, City University of Hong Kong, Hong Kong
Recommended Citation
GB/T 7714
Mabato, Beatrix Rosette Go,Li, Yong Jie,Huang, Dan Dan,et al. Comparison of aqueous secondary organic aerosol (aqSOA) product distributions from guaiacol oxidation by non-phenolic and phenolic methoxybenzaldehydes as photosensitizers in the absence and presence of ammonium nitrate[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2023, 23(4), 2859-2875.
APA Mabato, Beatrix Rosette Go., Li, Yong Jie., Huang, Dan Dan., Wang, Yalin., & Chan, Chak K. (2023). Comparison of aqueous secondary organic aerosol (aqSOA) product distributions from guaiacol oxidation by non-phenolic and phenolic methoxybenzaldehydes as photosensitizers in the absence and presence of ammonium nitrate. ATMOSPHERIC CHEMISTRY AND PHYSICS, 23(4), 2859-2875.
MLA Mabato, Beatrix Rosette Go,et al."Comparison of aqueous secondary organic aerosol (aqSOA) product distributions from guaiacol oxidation by non-phenolic and phenolic methoxybenzaldehydes as photosensitizers in the absence and presence of ammonium nitrate".ATMOSPHERIC CHEMISTRY AND PHYSICS 23.4(2023):2859-2875.
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