Atmospheric aerosols impact climate by scattering and absorbing solar radiation and by acting as ice and cloud condensation nuclei. Biogenic secondary organic aerosols (BSOAs) comprise an important component of atmospheric aerosols. Biogenic volatile organic compounds (BVOCs) emitted by vegetation are the source of BSOAs. Pathogens and insect attacks, heat waves and droughts can induce stress to plants that may impact their BVOC emissions, and hence the yield and type of formed BSOAs, and possibly their climatic effects. This raises questions of whether stress-induced changes in BSOA formation may attenuate or amplify effects of climate change. In this study we assess the potential impact of stress-induced BVOC emissions on BSOA formation f...
Most trees emit volatile organic compounds (VOCs) continuously throughout their life, but the rate o...
Volatile organic compounds (VOCs) are hydrocarbons that are emitted to the atmosphere from biogenic ...
One barrier to predicting biogenic secondary organic aerosol (SOA) formation in a changing climate c...
Plant stress in a changing climate is predicted to increase plant volatile organic compound (VOC) em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
Boreal forests are a major source of climate-relevant biogenic secondary organic aerosols (SOAs) and...
Boreal forests are a major source of climate-relevant biogenic secondary organic aerosols (SOAs) and...
Thesis (Ph.D.), College of Engineering and Architecture, Washington State UniversityAtmospheric aero...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
The terrestrial vegetation emits large amounts of volatile organic compounds (VOC) into the atmosphe...
In addition to climate warming, greater herbivore pressure is anticipated to enhance the emissions o...
One barrier to predicting biogenic secondary organic aerosol (SOA) formation in a changing climate c...
Most trees emit volatile organic compounds (VOCs) continuously throughout their life, but the rate o...
Volatile organic compounds (VOCs) are hydrocarbons that are emitted to the atmosphere from biogenic ...
One barrier to predicting biogenic secondary organic aerosol (SOA) formation in a changing climate c...
Plant stress in a changing climate is predicted to increase plant volatile organic compound (VOC) em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
Boreal forests are a major source of climate-relevant biogenic secondary organic aerosols (SOAs) and...
Boreal forests are a major source of climate-relevant biogenic secondary organic aerosols (SOAs) and...
Thesis (Ph.D.), College of Engineering and Architecture, Washington State UniversityAtmospheric aero...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
We have investigated the potential impact on organic aerosol formation from biotic stress-induced em...
The terrestrial vegetation emits large amounts of volatile organic compounds (VOC) into the atmosphe...
In addition to climate warming, greater herbivore pressure is anticipated to enhance the emissions o...
One barrier to predicting biogenic secondary organic aerosol (SOA) formation in a changing climate c...
Most trees emit volatile organic compounds (VOCs) continuously throughout their life, but the rate o...
Volatile organic compounds (VOCs) are hydrocarbons that are emitted to the atmosphere from biogenic ...
One barrier to predicting biogenic secondary organic aerosol (SOA) formation in a changing climate c...