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Radiative forcing of phytogenic aerosols
J. G. Barr
,
J. D. Fuentes
, J. W. Bottenheim
Meteorology and Atmospheric Science
Institute of Energy and the Environment (IEE)
Center for Pollinator Research
Huck Institutes of the Life Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
8
Scopus citations
Overview
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Keyphrases
Aerosol
100%
Aerosol Concentration
60%
Aerosol Distribution
20%
Atmospheric Boundary Layer
20%
Attenuation
20%
Biogenic Hydrocarbons
20%
Carbon Dioxide
20%
Diffuse Component
20%
Diffuse Irradiance
20%
Eastern Canada
40%
Forest Area
20%
Forest Ecosystem
40%
Greenhouse Gas
20%
Hydrocarbons
20%
Irradiance
20%
Irradiance Level
20%
Isoprene
20%
Mixing Ratio
20%
Oxidation Mechanism
20%
Parts per Billion
20%
Phytogenic
100%
Pinene
80%
Radiative Forcing
100%
Radiative Transfer Model
20%
Solar Irradiance
80%
Thermal Forcing
20%
Earth and Planetary Sciences
Boundary Layer
14%
Canada
28%
Carbon Dioxide
14%
Forest Ecosystem
28%
Greenhouse Gas
14%
Irradiance
100%
Mixing Ratio
14%
Radiative Forcing
100%
Radiative Transfer
14%