Multicomponent new particle formation from sulfuric acid, ammonia, and biogenic vapors

A major fraction of atmospheric aerosol particles, which affect both air quality and climate, form from gaseous precursors in the atmosphere. Highly oxygenated organic molecules (HOMs), formed by oxidation of biogenic volatile organic compounds, are known to participate in particle formation and gro...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Science advances 2018-12, Vol.4 (12), p.eaau5363
Hauptverfasser: Lehtipalo, Katrianne, Yan, Chao, Dada, Lubna, Bianchi, Federico, Xiao, Mao, Wagner, Robert, Stolzenburg, Dominik, Ahonen, Lauri R, Amorim, Antonio, Baccarini, Andrea, Bauer, Paulus S, Baumgartner, Bernhard, Bergen, Anton, Bernhammer, Anne-Kathrin, Breitenlechner, Martin, Brilke, Sophia, Buchholz, Angela, Mazon, Stephany Buenrostro, Chen, Dexian, Chen, Xuemeng, Dias, Antonio, Dommen, Josef, Draper, Danielle C, Duplissy, Jonathan, Ehn, Mikael, Finkenzeller, Henning, Fischer, Lukas, Frege, Carla, Fuchs, Claudia, Garmash, Olga, Gordon, Hamish, Hakala, Jani, He, Xucheng, Heikkinen, Liine, Heinritzi, Martin, Helm, Johanna C, Hofbauer, Victoria, Hoyle, Christopher R, Jokinen, Tuija, Kangasluoma, Juha, Kerminen, Veli-Matti, Kim, Changhyuk, Kirkby, Jasper, Kontkanen, Jenni, Kürten, Andreas, Lawler, Michael J, Mai, Huajun, Mathot, Serge, Mauldin, 3rd, Roy L, Molteni, Ugo, Nichman, Leonid, Nie, Wei, Nieminen, Tuomo, Ojdanic, Andrea, Onnela, Antti, Passananti, Monica, Petäjä, Tuukka, Piel, Felix, Pospisilova, Veronika, Quéléver, Lauriane L J, Rissanen, Matti P, Rose, Clémence, Sarnela, Nina, Schallhart, Simon, Schuchmann, Simone, Sengupta, Kamalika, Simon, Mario, Sipilä, Mikko, Tauber, Christian, Tomé, António, Tröstl, Jasmin, Väisänen, Olli, Vogel, Alexander L, Volkamer, Rainer, Wagner, Andrea C, Wang, Mingyi, Weitz, Lena, Wimmer, Daniela, Ye, Penglin, Ylisirniö, Arttu, Zha, Qiaozhi, Carslaw, Kenneth S, Curtius, Joachim, Donahue, Neil M, Flagan, Richard C, Hansel, Armin, Riipinen, Ilona, Virtanen, Annele, Winkler, Paul M, Baltensperger, Urs, Kulmala, Markku, Worsnop, Douglas R
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:A major fraction of atmospheric aerosol particles, which affect both air quality and climate, form from gaseous precursors in the atmosphere. Highly oxygenated organic molecules (HOMs), formed by oxidation of biogenic volatile organic compounds, are known to participate in particle formation and growth. However, it is not well understood how they interact with atmospheric pollutants, such as nitrogen oxides (NO ) and sulfur oxides (SO ) from fossil fuel combustion, as well as ammonia (NH ) from livestock and fertilizers. Here, we show how NO suppresses particle formation, while HOMs, sulfuric acid, and NH have a synergistic enhancing effect on particle formation. We postulate a novel mechanism, involving HOMs, sulfuric acid, and ammonia, which is able to closely reproduce observations of particle formation and growth in daytime boreal forest and similar environments. The findings elucidate the complex interactions between biogenic and anthropogenic vapors in the atmospheric aerosol system.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.aau5363