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dc.contributor.author
Reitz, P.
dc.contributor.author
Spindler, C.
dc.contributor.author
Mentel, Thomas F.
dc.contributor.author
Poulain, Laurent
dc.contributor.author
Wex, Heike
dc.contributor.author
Mildenberger, K.
dc.contributor.author
Niedermeier, Dennis
dc.contributor.author
Hartmann, S.
dc.contributor.author
Clauss, T.
dc.contributor.author
Stratmann, Frank
dc.contributor.author
Sullivan, Ryan C.
dc.contributor.author
DeMott, Paul J.
dc.contributor.author
Petters, Markus D.
dc.contributor.author
Sierau, Berko
dc.contributor.author
Schneider, Johannes
dc.date.accessioned
2018-11-05T13:35:54Z
dc.date.available
2017-06-09T13:26:18Z
dc.date.available
2018-11-05T13:35:54Z
dc.date.issued
2011
dc.identifier.issn
1680-7375
dc.identifier.issn
1680-7367
dc.identifier.other
10.5194/acp-11-7839-2011
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/39035
dc.identifier.doi
10.3929/ethz-b-000039035
dc.description.abstract
The ability of coated mineral dust particles to act as ice nuclei (IN) was investigated at LACIS (Leipzig Aerosol Cloud Interaction Simulator) during the FROST1- and FROST2-campaigns (Freezing of dust). Sulphuric acid was condensed on the particles which afterwards were optionally humidified, treated with ammonia vapour and/or heat. By means of aerosol mass spectrometry we found evidence that processing of mineral dust particles with sulphuric acid leads to surface modifications of the particles. These surface modifications are most likely responsible for the observed reduction of the IN activation of the particles. The observed particle mass spectra suggest that different treatments lead to different chemical reactions on the particle surface. Possible chemical reaction pathways and products are suggested and the implications on the IN efficiency of the treated dust particles are discussed.
en_US
dc.format
application/pdf
en_US
dc.language.iso
en
en_US
dc.publisher
Copernicus
en_US
dc.rights.uri
http://creativecommons.org/licenses/by/3.0/
dc.title
Surface modification of mineral dust particles by sulphuric acid processing: implications for ice nucleation abilities
en_US
dc.type
Journal Article
dc.rights.license
Creative Commons Attribution 3.0 Unported
dc.date.published
2011-08-03
ethz.journal.title
Atmospheric Chemistry and Physics
ethz.journal.volume
11
en_US
ethz.journal.issue
15
en_US
ethz.journal.abbreviated
Atmos. chem. phys.
ethz.pages.start
7839
en_US
ethz.pages.end
7858
en_US
ethz.version.deposit
publishedVersion
en_US
ethz.identifier.wos
ethz.identifier.nebis
004294181
ethz.publication.place
Göttingen
en_US
ethz.publication.status
published
en_US
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02350 - Dep. Umweltsystemwissenschaften / Dep. of Environmental Systems Science::02717 - Institut für Atmosphäre und Klima / Inst. Atmospheric and Climate Science::03690 - Lohmann, Ulrike / Lohmann, Ulrike
en_US
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02350 - Dep. Umweltsystemwissenschaften / Dep. of Environmental Systems Science::02717 - Institut für Atmosphäre und Klima / Inst. Atmospheric and Climate Science::03690 - Lohmann, Ulrike / Lohmann, Ulrike
ethz.date.deposited
2017-06-09T13:26:38Z
ethz.source
ECIT
ethz.identifier.importid
imp59364e5a5124931137
ethz.ecitpid
pub:62812
ethz.eth
yes
en_US
ethz.availability
Open access
en_US
ethz.rosetta.installDate
2017-07-19T09:56:55Z
ethz.rosetta.lastUpdated
2023-02-06T16:34:06Z
ethz.rosetta.versionExported
true
ethz.COinS
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