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Sökning: id:"swepub:oai:lup.lub.lu.se:bbad38ec-0386-406b-be6b-88ddeed6548b" > Isoprene suppressio...

Isoprene suppression of new particle formation : Potential mechanisms and implications

Lee, Shan Hu (författare)
University of Alabama
Uin, Janek (författare)
Brookhaven National Laboratory
Guenther, Alex B. (författare)
University of California, Irvine
visa fler...
de Gouw, Joost A. (författare)
National Oceanic and Atmospheric Administration (NOAA)
Yu, Fangqun (författare)
The State University of New York
Nadykto, Alex B. (författare)
The State University of New York,Moscow State Technological University
Herb, Jason (författare)
The State University of New York
Ng, Nga L. (författare)
Georgia Institute of Technology
Koss, Abigail (författare)
National Oceanic and Atmospheric Administration (NOAA)
Brune, William Henry (författare)
Pennsylvania State University
Baumann, Karsten (författare)
Atmospheric Research and Analysis Inc
Kanawade, Vijay P. (författare)
Lund University,Lunds universitet,Institutionen för naturgeografi och ekosystemvetenskap,Naturvetenskapliga fakulteten,Dept of Physical Geography and Ecosystem Science,Faculty of Science
Keutsch, Frank N. (författare)
Harvard University
Nenes, Athanasios (författare)
Georgia Institute of Technology
Olsen, Kevin (författare)
University of California, Berkeley
Goldstein, Allen (författare)
University of California, Berkeley
Ouyang, Qi (författare)
University of Alabama
visa färre...
 (creator_code:org_t)
2016
2016
Engelska 15 s.
Ingår i: Journal of Geophysical Research: Atmospheres. - 2169-897X. ; 121:24, s. 14-635
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • Secondary aerosols formed from anthropogenic pollutants and natural emissions have substantial impacts on human health, air quality, and the Earth's climate. New particle formation (NPF) contributes up to 70% of the global production of cloud condensation nuclei (CCN), but the effects of biogenic volatile organic compounds (BVOCs) and their oxidation products on NPF processes in forests are poorly understood. Observations show that isoprene, the most abundant BVOC, suppresses NPF in forests. But the previously proposed chemical mechanism underlying this suppression process contradicts atmospheric observations. By reviewing observations made in other forests, it is clear that NPF rarely takes place during the summer when emissions of isoprene are high, even though there are sufficient concentrations of monoterpenes. But at present it is not clear how isoprene and its oxidation products may change the oxidation chemistry of terpenes and how NOx and other atmospheric key species affect NPF in forest environments. Future laboratory experiments with chemical speciation of gas phase nucleation precursors and clusters and chemical composition of particles smaller than 10 nm are required to understand the role of isoprene in NPF. Our results show that climate models can overpredict aerosol's first indirect effect when not considering the absence of NPF in the southeastern U.S. forests during the summer using the current nucleation algorithm that includes only sulfuric acid and total concentrations of low-volatility organic compounds. This highlights the importance of understanding NPF processes as function of temperature, relative humidity, and BVOC compositions to make valid predictions of NPF and CCN at a wide range of atmospheric conditions.

Ämnesord

NATURVETENSKAP  -- Geovetenskap och miljövetenskap -- Meteorologi och atmosfärforskning (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences -- Meteorology and Atmospheric Sciences (hsv//eng)

Nyckelord

isoprene
monoterpene
new particle formation
nucleation
oxidation
suppression

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ref (ämneskategori)

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