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Impact of humidity on aerosol growth from methanesulfonic acid

Yu, Wenjuan; Baalbaki, Rima; Shen, Jiali; DeVivo, Jenna; Caudillo-Plath, Lucía; Sommer, Eva; Heitto, Arto; Klebach, Hannah; Russell, Douglas M.; Amorim, António; Beckmann, Hannah; Bhattacharyya, Nirvan; Blankenship, Vine; Chassaing, Anouck; Cruz-Simbron, Romulo; Dada, Lubna; Jacobshagen, Aenne; Judmaier, Bernhard; Kaniyodical Sebastian, Milin ORCID iD icon 1; ... mehr

Abstract:

Methanesulfonic acid (MSA; CH$_3$SO$_3$H), produced by oxidation of dimethylsulfide (DMS; CH$_3$SCH$_3$), is a key precursor for aerosols in the marine boundary layer and free troposphere. Laboratory experiments show that MSA contributes to both particle nucleation and subsequent growth, often together with sulfuric acid (H$_2$SO$_4$) and base vapours such as ammonia (NH3). However, the influence of relative humidity (RH) on MSA condensation to particles remains uncertain. Here, in experiments conducted under low NH$_3$ conditions (<4 parts per trillion by volume, pptv) at the CERN Cosmics Leaving OUtdoor Droplets (CLOUD) chamber, we find that RH critically regulates the participation of MSA in the initial growth of newly formed particles. Between +10 °C and −10 °C, MSA drives rapid particle growth at high RH (>50%), whereas its contribution at low RH (<16%) is negligible. When comparing with aerosol process models such as the Model for Acid–Base Chemistry in Nanoparticle Growth (MABNAG), we find that the model fails to match our laboratory results. In particular, our measurements show that MSA drives rapid particle growth at substantially warmer temperatures and lower relative humidities than predicted by the Extended Aerosol Inorganic Model (E-AIM). ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000195380
Veröffentlicht am 22.07.2026
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für Meteorologie und Klimaforschung Atmosphärische Aerosolforschung (IMKAAF)
Publikationstyp Zeitschriftenaufsatz
Publikationsjahr 2026
Sprache Englisch
Identifikator ISSN: 2634-3606
KITopen-ID: 1000195380
Erschienen in Environmental Science: Atmospheres
Verlag Royal Society of Chemistry (RSC)
Seiten 1
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