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dc.contributor.authorFossum, Kirsten N.
dc.contributor.authorOvadnevaite, Jurgita
dc.contributor.authorCeburnis, Darius
dc.contributor.authorPreißler, Jana
dc.contributor.authorSnider, Jefferson R.
dc.contributor.authorHuang, Ru-Jin
dc.contributor.authorZuend, Andreas
dc.contributor.authorO’Dowd, Colin
dc.date.accessioned2020-06-19T07:01:52Z
dc.date.available2020-06-19T07:01:52Z
dc.date.issued2020-04-08
dc.identifier.citationFossum, Kirsten N., Ovadnevaite, Jurgita, Ceburnis, Darius, Preißler, Jana, Snider, Jefferson R., Huang, Ru-Jin, Zuend, Andreas, O’Dowd, Colin. (2020). Sea-spray regulates sulfate cloud droplet activation over oceans. npj Climate and Atmospheric Science, 3(1), 14. doi:10.1038/s41612-020-0116-2en_IE
dc.identifier.issn2397-3722
dc.identifier.urihttp://hdl.handle.net/10379/16037
dc.description.abstractSulfate aerosols are typically the dominant source of cloud condensation nuclei (CCN) over remote oceans and their abundance is thought to be the dominating factor in determining oceanic cloud brightness. Their activation into cloud droplets depends on dynamics (i.e. vertical updrafts) and competition with other potential CCN sources for the condensing water. We present new experimental results from the remote Southern Ocean illustrating that, for a given updraft, the peak supersaturation reached in cloud, and consequently the number of droplets activated on sulfate nuclei, is strongly but inversely proportional to the concentration of sea-salt activated despite a 10-fold lower abundance. Greater sea-spray nuclei availability mostly suppresses sulfate aerosol activation leading to an overall decrease in cloud droplet concentrations; however, for high vertical updrafts and low sulfate aerosol availability, increased sea-spray can augment cloud droplet concentrations. This newly identified effect where sea-salt nuclei indirectly controls sulfate nuclei activation into cloud droplets could potentially lead to changes in the albedo of marine boundary layer clouds by as much as 30%.en_IE
dc.description.sponsorshipThe research leading to these results has received funding from SFI under MaREI; the European Union’s Seventh Framework Programme (FP7/2007–2013) project BACCHUS under grant agreement n_603445; Spanish Ministry of Economy and Competitiveness (MINECO) as part of the PEGASO (Ref.: CTM2012-37615) and BIONUC (Ref: CGL2013-49020-R) projects. The Antarctic cruise that led to this study was organised by R. Simo and M. Dall’Osto from the Institut de Ciéncies del Mar (CSIC), Barcelona, Catalonia, Spain.en_IE
dc.formatapplication/pdfen_IE
dc.language.isoenen_IE
dc.publisherNature Research (part of Springer Nature)en_IE
dc.relation.ispartofNpj Climate And Atmospheric Scienceen
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Ireland
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/3.0/ie/
dc.subjectCONDENSATION NUCLEIen_IE
dc.subjectTHERMODYNAMIC MODELen_IE
dc.subjectAEROSOLen_IE
dc.subjectSIZEen_IE
dc.subjectPARAMETERIZATIONen_IE
dc.subjectALBEDOen_IE
dc.subjectSALTen_IE
dc.subjectPARTICLEen_IE
dc.subjectSULFURen_IE
dc.subjectGROWTHen_IE
dc.titleSea-spray regulates sulfate cloud droplet activation over oceansen_IE
dc.typeArticleen_IE
dc.date.updated2020-06-18T12:24:21Z
dc.identifier.doi10.1038/s41612-020-0116-2
dc.local.publishedsourcehttps://doi.org/10.1038/s41612-020-0116-2en_IE
dc.description.peer-reviewedpeer-reviewed
dc.contributor.funderSeventh Framework Programmeen_IE
dc.contributor.funderScience Foundation Irelanden_IE
dc.contributor.funderSpanish Ministry of Economy and Competitiveness (MINECO)en_IE
dc.internal.rssid21252190
dc.local.contactDarius Ceburnis, University Road, School Of Physics, Nui Galway, Room Phy229 , Arts/Science Building. 2496 Email: darius.ceburnis@nuigalway.ie
dc.local.copyrightcheckedYes
dc.local.versionPUBLISHED
dcterms.projectinfo:eu-repo/grantAgreement/EC/FP7::SP1::ENV/603445/EU/Impact of Biogenic versus Anthropogenic emissions on Clouds and Climate: towards a Holistic UnderStanding/BACCHUSen_IE
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