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Secondary organic aerosol formation from anthropogenic air pollution: Rapid and higher than expected

Geophysical Research Letters · 2006 · Vol. 33(17)
Rainer VolkamerJ. L. JiménezFederico San MartiniK. DžepinaQi ZhangD. SalcedoL. T. MolinaDouglas R. WorsnopMario J. Molina

Abstract

The atmospheric chemistry of volatile organic compounds (VOCs) in urban areas results in the formation of ‘photochemical smog’, including secondary organic aerosol (SOA). State‐of‐the‐art SOA models parameterize the results of simulation chamber experiments that bracket the conditions found in the polluted urban atmosphere. Here we show that in the real urban atmosphere reactive anthropogenic VOCs (AVOCs) produce much larger amounts of SOA than these models predict, even shortly after sunrise. Contrary to current belief, a significant fraction of the excess SOA is formed from first‐generation AVOC oxidation products. Global models deem AVOCs a very minor contributor to SOA compared to biogenic VOCs (BVOCs). If our results are extrapolated to other urban areas, AVOCs could be responsible for additional 3–25 Tg yr −1 SOA production globally, and cause up to −0.1 W m −2 additional top‐of‐the‐atmosphere radiative cooling.

Atmospheric chemistry and aerosolsAir Quality and Health ImpactsAtmospheric aerosols and cloudsAerosolAtmosphere (unit)Environmental scienceAtmospheric sciencesEnvironmental chemistryPollutionOzoneAir pollutionAtmospheric chemistrySunrise
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References
Gas/Particle Partitioning and Secondary Organic Aerosol Yields
Environmental Science & Technology · 1996 · 1,742 citations
Agroecosystem responses to combinations of elevated CO2, ozone, and global climate change
Agriculture Ecosystems & Environment · 2003 · 603 citations
Organic aerosol and global climate modelling: a review
Atmospheric chemistry and physics · 2005 · 3,709 citations
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