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dc.contributor.authorTiitta Petri
dc.contributor.authorLeskinen Ari
dc.contributor.authorHao Liqing
dc.contributor.authorYli-Pirilä Pasi
dc.contributor.authorKortelainen Miika
dc.contributor.authorGrigonyte Julija
dc.contributor.authorTissari Jarkko
dc.contributor.authorLamberg Heikki
dc.contributor.authorHartikainen Anni
dc.contributor.authorKuuspalo Kari
dc.contributor.authorKortelainen Aki-Matti
dc.contributor.authorVirtanen Annele
dc.contributor.authorLehtinen Kari EJ
dc.contributor.authorKomppula Mika
dc.contributor.authorPieber Simone
dc.contributor.authorPrévôt André SH
dc.contributor.authorOnasch Timothy B
dc.contributor.authorWorsnop Douglas R
dc.contributor.authorCzech Hendryk
dc.contributor.authorZimmermann Ralf et al
dc.date.accessioned2018-09-17T08:14:20Z
dc.date.available2018-09-17T08:14:20Z
dc.date.issued2016
dc.identifier.urihttps://erepo.uef.fi/handle/123456789/6917
dc.description.abstractOrganic aerosols (OA) derived from small-scale wood combustion emissions are not well represented by current emissions inventories and models, although they contribute substantially to the atmospheric particulate matter (PM) levels. In this work, a 29m3 smog chamber in the ILMARI facility of the University of Eastern Finland was utilized to investigate the formation of secondary organic aerosol (SOA) from a small-scale modern masonry heater commonly used in northern Europe. Emissions were oxidatively aged in the smog chamber for a variety of dark (i.e., O3 and NO3) and UV (i.e., OH) conditions, with OH concentration levels of (0.5–5) × 106moleculescm−3, achieving equivalent atmospheric aging of up to 18h. An aerosol mass spectrometer characterized the direct OA emissions and the SOA formed from the combustion of three wood species (birch, beech and spruce) using two ignition processes (fast ignition with a VOC-to-NOx ratio of 3 and slow ignition with a ratio of 5). Dark and UV aging increased the SOA mass fraction with average SOA productions 2.0 times the initial OA mass loadings. SOA enhancement was found to be higher for the slow ignition compared with fast ignition conditions. Positive matrix factorization (PMF) was used to separate SOA, primary organic aerosol (POA) and their subgroups from the total OA mass spectra. PMF analysis identified two POA and three SOA factors that correlated with the three major oxidizers: ozone, the nitrate radical and the OH radical. Organonitrates (ONs) were observed to be emitted directly from the wood combustion and additionally formed during oxidation via NO3 radicals (dark aging), suggesting small-scale wood combustion may be a significant ON source. POA was oxidized after the ozone addition, forming aged POA, and after 7h of aging more than 75% of the original POA was transformed. This process may involve evaporation and homogeneous gas-phase oxidation as well as heterogeneous oxidation of particulate organic matter. The results generally prove that logwood burning emissions are the subject of intensive chemical processing in the atmosphere, and the timescale for these transformations is relatively short, i.e., hours.
dc.language.isoenglanti
dc.publisherCopernicus GmbH
dc.relation.ispartofseriesATMOSPHERIC CHEMISTRY AND PHYSICS
dc.relation.urihttp://dx.doi.org/10.5194/acp-16-13251-2016
dc.rightsCC BY 4.0
dc.titleTransformation of logwood combustion emissions in a smog chamber: formation of secondary organic aerosol and changes in the primary organic aerosol upon daytime and nighttime aging
dc.description.versionpublished version
dc.contributor.departmentYmpäristö- ja biotieteiden laitos / Toiminta
dc.contributor.departmentDepartment of Applied Physics, activities
uef.solecris.id43272342en
dc.type.publicationTieteelliset aikakauslehtiartikkelit
dc.relation.doi10.5194/acp-16-13251-2016
dc.description.reviewstatuspeerReviewed
dc.format.pagerange13251-13269
dc.publisher.countrySaksa
dc.relation.issn1680-7316
dc.relation.volume16
dc.rights.accesslevelopenAccess
dc.type.okmA1
uef.solecris.openaccessOpen access -julkaisukanavassa ilmestynyt julkaisu
dc.rights.copyright© Authors
dc.type.displayTypearticleen
dc.type.displayTypeartikkelifi
dc.rights.urlhttps://creativecommons.org/licenses/by/4.0/


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