Submicron aerosol particles were collected during July and August 2010 in Hyytiala, Finland, to determine the composition and sources of aerosol at that boreal forest site. Submicron particles were collected on Teflon filters and analyzed by Fourier transform infrared (FTIR) spectroscopy for organic functional groups (OFGs). Positive matrix factorization (PMF) was applied to aerosol mass spectrometry (AMS) measurements and FTIR spectra to identify summertime sources of submicron aerosol mass at the sampling site. The two largest sources of organic mass (OM) in particles identified at Hyytiala were (1) biogenic aerosol from surrounding local forest and (2) biomass burning aerosol, transported 4-5 days from large wildfires burning near Moscow...
Fine particulate matter (PM) affects visibility, climate and public health. Organic matter (OM), whi...
Submicron ambient aerosol was characterized in summer 2005 at an urban background site in Zurich, Sw...
International audienceThis study presents the molecular composition of organic aerosol (OA) using ul...
Submicron aerosol particles were collected during July and August 2010 in Hyytiala, Finland, to dete...
Submicron aerosol particles were collected during July and August 2010 in Hyytiälä, Finland, to dete...
Aerosols play a significant role in the atmosphere through affecting the radiative budget, cloud con...
The chemical composition of submicron aerosol during the comprehensive field campaign HUMPPA-COPEC 2...
Aerosols contribute to the largest uncertainty in climate prediction (IPCC, 2007) from both direct a...
Abstract. Ambient particles collected on teflon filters at the Peak of Whistler Mountain, British Co...
The study investigates the sources of fine organic aerosol (OA) in the boreal forest, based on measu...
Ambient particles collected on teflon filters at the Peak of Whistler Mountain, British Columbia (21...
The aim of this work is to apply methods of aerosol mass spectrometry and positive matrix factorizat...
The chemical and isotopic composition of organic aerosol (OA) samples collected on PM1 filters was d...
Biomass burning from residential wood burning, wildfires, and prescribed burning is a major source o...
Fine particulate matter (PM) affects visibility, climate and public health. Organic matter (OM), whi...
Submicron ambient aerosol was characterized in summer 2005 at an urban background site in Zurich, Sw...
International audienceThis study presents the molecular composition of organic aerosol (OA) using ul...
Submicron aerosol particles were collected during July and August 2010 in Hyytiala, Finland, to dete...
Submicron aerosol particles were collected during July and August 2010 in Hyytiälä, Finland, to dete...
Aerosols play a significant role in the atmosphere through affecting the radiative budget, cloud con...
The chemical composition of submicron aerosol during the comprehensive field campaign HUMPPA-COPEC 2...
Aerosols contribute to the largest uncertainty in climate prediction (IPCC, 2007) from both direct a...
Abstract. Ambient particles collected on teflon filters at the Peak of Whistler Mountain, British Co...
The study investigates the sources of fine organic aerosol (OA) in the boreal forest, based on measu...
Ambient particles collected on teflon filters at the Peak of Whistler Mountain, British Columbia (21...
The aim of this work is to apply methods of aerosol mass spectrometry and positive matrix factorizat...
The chemical and isotopic composition of organic aerosol (OA) samples collected on PM1 filters was d...
Biomass burning from residential wood burning, wildfires, and prescribed burning is a major source o...
Fine particulate matter (PM) affects visibility, climate and public health. Organic matter (OM), whi...
Submicron ambient aerosol was characterized in summer 2005 at an urban background site in Zurich, Sw...
International audienceThis study presents the molecular composition of organic aerosol (OA) using ul...