<p>Biomass burning (BB) emissions and their atmospheric oxidation products can contribute significantly to direct aerosol radiative forcing of climate. Limited knowledge of BB organic aerosol chemical and optical properties leads to large uncertainties in climate models. In this article, we describe the experimental setup and the main findings of a laboratory BB study aimed at comprehensive optical, physical, and chemical characterization of fresh and aged BB emissions. An oxidation flow reactor (OFR) was used to mimic atmospheric oxidation processes. The OFR was characterized in terms of OH⋅ production rate, particle transmission efficiency, and characteristic lifetimes of condensible compounds. Emission factors (EFs) of main air pollutant...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...
Particulate matter from biomass burning emissions affects air quality, ecosystems and climate; howev...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...
Biomass burning (BB) emissions and their oxidation products contribute significantly to Earth’s radi...
Biomass burning is an important source of aerosol and trace gases to the atmosphere, but how these e...
Biomass burning is one of the largest contributors of particles and trace gases to the atmosphere. T...
We put forth in this work a multifaceted approach aimed at reducing the uncertainty regarding the ef...
Biomass burning is one of the largest contributors of particles and trace gases to the atmosphere. T...
Smog chamber experiments were conducted to investigate the chemical and physical transformations of ...
Biomass burning (BB) is the second largest source of trace gases and the largest source of primary f...
We quantify the hygroscopic properties of particles freshly emitted from biomass burning and after s...
Biomass burning (BB) is the second largest source of trace gases and the largest source of primary f...
Emissions from wildfires and use of biomass fuels can contribute not only to local air quality but t...
<p>We quantify the hygroscopic properties of particles freshly emitted from biomass burning and afte...
Biomass burning (BB) is an important source of primary organic aerosols (POA). These POA contain a s...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...
Particulate matter from biomass burning emissions affects air quality, ecosystems and climate; howev...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...
Biomass burning (BB) emissions and their oxidation products contribute significantly to Earth’s radi...
Biomass burning is an important source of aerosol and trace gases to the atmosphere, but how these e...
Biomass burning is one of the largest contributors of particles and trace gases to the atmosphere. T...
We put forth in this work a multifaceted approach aimed at reducing the uncertainty regarding the ef...
Biomass burning is one of the largest contributors of particles and trace gases to the atmosphere. T...
Smog chamber experiments were conducted to investigate the chemical and physical transformations of ...
Biomass burning (BB) is the second largest source of trace gases and the largest source of primary f...
We quantify the hygroscopic properties of particles freshly emitted from biomass burning and after s...
Biomass burning (BB) is the second largest source of trace gases and the largest source of primary f...
Emissions from wildfires and use of biomass fuels can contribute not only to local air quality but t...
<p>We quantify the hygroscopic properties of particles freshly emitted from biomass burning and afte...
Biomass burning (BB) is an important source of primary organic aerosols (POA). These POA contain a s...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...
Particulate matter from biomass burning emissions affects air quality, ecosystems and climate; howev...
The aim was to identify relationships between combustion conditions, particle characteristics, and o...