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Comparison of the SAWNUC model with CLOUD measurements of sulphuric acid-water nucleation

  • Binary nucleation of sulphuric acid-water particles is expected to be an important process in the free troposphere at low temperatures. SAWNUC (Sulphuric Acid Water Nucleation) is a model of binary nucleation that is based on laboratory measurements of the binding energies of sulphuric acid and water in charged and neutral clusters. Predictions of SAWNUC are compared for the first time comprehensively with experimental binary nucleation data from the CLOUD chamber at European Organization for Nuclear Research. The experimental measurements span a temperature range of 208–292 K, sulphuric acid concentrations from 1·106 to 1·109 cm−3, and distinguish between ion-induced and neutral nucleation. Good agreement, within a factor of 5, is found between the experimental and modeled formation rates for ion-induced nucleation at 278 K and below and for neutral nucleation at 208 and 223 K. Differences at warm temperatures are attributed to ammonia contamination which was indicated by the presence of ammonia-sulphuric acid clusters, detected by an Atmospheric Pressure Interface Time of Flight (APi-TOF) mass spectrometer. APi-TOF measurements of the sulphuric acid ion cluster distributions (math formula with i = 0, 1, ..., 10) show qualitative agreement with the SAWNUC ion cluster distributions. Remaining differences between the measured and modeled distributions are most likely due to fragmentation in the APi-TOF. The CLOUD results are in good agreement with previously measured cluster binding energies and show the SAWNUC model to be a good representation of ion-induced and neutral binary nucleation of sulphuric acid-water clusters in the middle and upper troposphere.
Metadaten
Verfasserangaben:Sebastian Ehrhart, Luisa Ickes, Joao Almeida, Antonio AmorimORCiD, Peter Barmet, Federico BianchiORCiDGND, Josef Dommen, Eimear M. Dunne, Jonathan DuplissyORCiD, Alessandro Franchin, Juha Kangasluoma, Jasper KirkbyORCiD, Christoph Andreas KürtenORCiDGND, Agnieszka Kupc, Katrianne LehtipaloORCiDGND, Tuomo Nieminen, Francesco Riccobono, Linda Rondo, Siegfried SchobesbergerORCiDGND, Gerhard Steiner, Antonio Tomé, Daniela WimmerORCiDGND, Urs BaltenspergerORCiDGND, Paul E. Wagner, Joachim CurtiusORCiD
URN:urn:nbn:de:hebis:30:3-450447
DOI:https://doi.org/10.1002/2015JD023723
ISSN:2169-8996
ISSN:2169-897X
Pubmed-Id:https://pubmed.ncbi.nlm.nih.gov/28239533
Titel des übergeordneten Werkes (Englisch):Journal of geophysical research. D, Atmospheres
Verlag:Wiley
Verlagsort:Hoboken, NJ
Dokumentart:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Veröffentlichung (online):14.11.2017
Jahr der Erstveröffentlichung:2016
Veröffentlichende Institution:Universitätsbibliothek Johann Christian Senckenberg
Datum der Freischaltung:14.11.2017
Freies Schlagwort / Tag:binary nucleation; ion‐induced nucleation
Jahrgang:121
Ausgabe / Heft:20
Seitenzahl:14
Erste Seite:12,401
Letzte Seite:12,414
Bemerkung:
©2016. The Authors. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
HeBIS-PPN:427970660
Institute:Geowissenschaften / Geographie / Geowissenschaften
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Sammlungen:Universitätspublikationen
Lizenz (Deutsch):License LogoCreative Commons - Namensnennung 4.0