Observation of viscosity transition in <i>α</i>-pinene secondary organic aerosol

Author:

Järvinen EmmaORCID,Ignatius Karoliina,Nichman LeonidORCID,Kristensen Thomas B.ORCID,Fuchs Claudia,Hoyle Christopher R.ORCID,Höppel Niko,Corbin Joel C.ORCID,Craven Jill,Duplissy Jonathan,Ehrhart SebastianORCID,El Haddad Imad,Frege CarlaORCID,Gordon HamishORCID,Jokinen TuijaORCID,Kallinger Peter,Kirkby JasperORCID,Kiselev AlexeiORCID,Naumann Karl-Heinz,Petäjä TuukkaORCID,Pinterich Tamara,Prevot Andre S. H.,Saathoff Harald,Schiebel Thea,Sengupta Kamalika,Simon Mario,Slowik Jay G.,Tröstl JasminORCID,Virtanen Annele,Vochezer Paul,Vogt Steffen,Wagner Andrea C.ORCID,Wagner RobertORCID,Williamson Christina,Winkler Paul M.,Yan ChaoORCID,Baltensperger Urs,Donahue Neil M.ORCID,Flagan Rick C.ORCID,Gallagher MartinORCID,Hansel ArminORCID,Kulmala MarkkuORCID,Stratmann Frank,Worsnop Douglas R.,Möhler Ottmar,Leisner Thomas,Schnaiter MartinORCID

Abstract

Abstract. Under certain conditions, secondary organic aerosol (SOA) particles can exist in the atmosphere in an amorphous solid or semi-solid state. To determine their relevance to processes such as ice nucleation or chemistry occurring within particles requires knowledge of the temperature and relative humidity (RH) range for SOA to exist in these states. In the Cosmics Leaving Outdoor Droplets (CLOUD) experiment at The European Organisation for Nuclear Research (CERN), we deployed a new in situ optical method to detect the viscous state of α-pinene SOA particles and measured their transition from the amorphous highly viscous state to states of lower viscosity. The method is based on the depolarising properties of laboratory-produced non-spherical SOA particles and their transformation to non-depolarising spherical particles at relative humidities near the deliquescence point. We found that particles formed and grown in the chamber developed an asymmetric shape through coagulation. A transition to a spherical shape was observed as the RH was increased to between 35 % at −10 °C and 80 % at −38 °C, confirming previous calculations of the viscosity-transition conditions. Consequently, α-pinene SOA particles exist in a viscous state over a wide range of ambient conditions, including the cirrus region of the free troposphere. This has implications for the physical, chemical, and ice-nucleation properties of SOA and SOA-coated particles in the atmosphere.

Publisher

Copernicus GmbH

Subject

Atmospheric Science

Reference64 articles.

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