[1] Biomass burning is a major source of trace gases and aerosols, influencing atmospheric chemistry and climate. To quantitatively assess its impact, an accurate representation of fire emissions is crucial for the atmospheric modeling community. So far, most studies rely on static emission factors (EF) which convert estimates of dry matter burned to trace gas and aerosol emissions. These EFs are often based on the arithmetic mean of field measurements stratified by biome, neglecting the variability in time and space. Here we present global carbon monoxide (CO) emission estimates from fires based on six EF scenarios with different spatial and temporal variability, using dry matter emission estimates from the Global Fire Emissions Database (...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
International audienceIn this paper, the fate of biomass burning emissions of carbon monoxide is stu...
[1] Biomass burning is a major source of trace gases and aerosols, influencing atmospheric chemistry...
[1] Biomass burning is a major source of trace gases and aerosols, influencing atmospheric chemistry...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Civil and Environmental Engine...
Attribution of the causes of atmospheric trace gas and aerosol variability often requires the use of...
Fires are a major source of trace gases and aerosols to the atmosphere. The amount of biomass burned...
Biomass burning is one of the largest sources of atmospheric trace gases and aerosols globally. Thes...
Attribution of the causes of atmospheric trace gas and aerosol variability often requires the use of...
Fires are responsible for a range of gaseous and aerosol emissions. However, their influence on the ...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
International audienceIn this paper, the fate of biomass burning emissions of carbon monoxide is stu...
[1] Biomass burning is a major source of trace gases and aerosols, influencing atmospheric chemistry...
[1] Biomass burning is a major source of trace gases and aerosols, influencing atmospheric chemistry...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Civil and Environmental Engine...
Attribution of the causes of atmospheric trace gas and aerosol variability often requires the use of...
Fires are a major source of trace gases and aerosols to the atmosphere. The amount of biomass burned...
Biomass burning is one of the largest sources of atmospheric trace gases and aerosols globally. Thes...
Attribution of the causes of atmospheric trace gas and aerosol variability often requires the use of...
Fires are responsible for a range of gaseous and aerosol emissions. However, their influence on the ...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
Fires have influenced atmospheric composition and climate since the rise of vascular plants, and sat...
International audienceIn this paper, the fate of biomass burning emissions of carbon monoxide is stu...