National Repository of Grey Literature 2 records found  Search took 0.00 seconds. 
Identifying of Organic Aerosol Sources by Using of Advanced Factor Analysis
Makeš, Otakar ; Vodička, Petr ; Schwarz, Jaroslav ; Canonaco, F. ; Prevot, A.
Real-time measurement of submicron aerosol was performed at Prague – Suchdol site (Czech Republic) during six weeks in June and July 2012. Organic aerosol data obtained from measurement by C-ToF AMS were deconvoluted using the Multilinear Engine (ME-2) algorithm (Paatero, 1999) and analyzed with the newly developed GUI provided by Paul Scherrer Institute (Canonaco et al. in prep.). During the analysis, we obtained four factor solution which explains more than 95% of the variance. These four factors, related to four aerosol sources, were fixed by the ME-2 model: Hydrocarbon-like organic aerosol (HOA) factor related to the road traffic, biomass burning organic aerosol (BBOA) factor, and two kinds of oxygenated organic aerosol factors (LV-OOA and SV-OOA). LV-OOA factor is the most frequently interpreted as an aged aerosol with low volatility. On the contrary, diurnal patterns of SV-OOA factor exhibit maxima at night and high anti-correlation with temperature. Therefore it can be assumed that SV-OOA factor represents a volatile fraction of OOA.
Fulltext: content.csg - Download fulltextPDF
Plný tet: SKMBT_C22013101814580 - Download fulltextPDF
Characterization of Submicron Organic Aerosol in Prague by ME 2 Factor Analysis of Summer AMS Data
Makeš, Otakar ; Vodička, Petr ; Schwarz, Jaroslav ; Canonaco, F. ; Prévôt, A.S.H. ; Ždímal, Vladimír
Real-time measurement of submicron aerosol was performed at Prague – Suchdol site (Czech Republic) during six weeks in June and July 2012. Highly time-and-size resolved data were obtained from measurements carried out by a Compact Time-of-Flight Aerosol Mass Spectrometer (C-ToF-AMS, Aerodyne). The retrieved organic data were deconvoluted using the Multilinear Engine (ME-2) algorithm (Paatero, 1999), and analyzed with the newly developed GUI provided by Paul Scherrer Institute (Canonaco et al. in prep.). The preliminary results are presented in this abstract.
Fulltext: content.csg - Download fulltextPDF
Plný tet: SKMBT_C22013091914040 - Download fulltextPDF

Interested in being notified about new results for this query?
Subscribe to the RSS feed.