P
Paul O. Wennberg
Researcher at California Institute of Technology
Publications - 421
Citations - 35598
Paul O. Wennberg is an academic researcher from California Institute of Technology. The author has contributed to research in topics: Total Carbon Column Observing Network & Isoprene. The author has an hindex of 96, co-authored 398 publications receiving 30122 citations. Previous affiliations of Paul O. Wennberg include National Oceanic and Atmospheric Administration & Harvard University.
Papers
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Journal ArticleDOI
Emission factors for open and domestic biomass burning for use in atmospheric models
S. K. Akagi,Robert J. Yokelson,Christine Wiedinmyer,Matthew J. Alvarado,Jeffrey S. Reid,Thomas Karl,John D. Crounse,Paul O. Wennberg +7 more
TL;DR: This paper presented an up-to-date, comprehensive tabulation of EF for known pyrogenic species based on measurements made in smoke that has cooled to ambient temperature, but not yet undergone significant photochemical processing.
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An atmospheric perspective on North American carbon dioxide exchange: CarbonTracker
Wouter Peters,Andrew R. Jacobson,Colm Sweeney,Arlyn E. Andrews,Thomas J. Conway,K. A. Masarie,John B. Miller,Lori Bruhwiler,Gabrielle Pétron,A. Hirsch,Douglas E. J. Worthy,G. R. van der Werf,James T. Randerson,Paul O. Wennberg,Maarten Krol,P. P. Tans +15 more
TL;DR: An estimate of net CO2 exchange between the terrestrial biosphere and the atmosphere across North America for every week in the period 2000 through 2005 is presented, derived from a set of 28,000 CO2 mole fraction observations in the global atmosphere that are fed into a state-of-the-art data assimilation system for CO2 called CarbonTracker.
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Unexpected epoxide formation in the gas-phase photooxidation of isoprene.
Fabien Paulot,John D. Crounse,Henrik G. Kjaergaard,Henrik G. Kjaergaard,Andreas Kürten,Jason M. St. Clair,John H. Seinfeld,Paul O. Wennberg +7 more
TL;DR: It is reported here that under pristine conditions isoprene is oxidized primarily to hydroxyhydroperoxides, which leads efficiently to the formation of dihydroxyepoxides and OH reformation, which provides a missing link tying the gas-phase degradation of isoprenes to the observed formation of organic aerosols.
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The Total Carbon Column Observing Network
Debra Wunch,Geoffrey C. Toon,Jean-Francois Blavier,Rebecca A. Washenfelder,Justus Notholt,Brian J. Connor,David W. T. Griffith,Vanessa Sherlock,Paul O. Wennberg +8 more
TL;DR: The TCCON provides a link between satellite measurements and the extensive ground-based in situ network and achieves an accuracy and precision in total column measurements that is unprecedented for remote-sensing observations.
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Reactive intermediates revealed in secondary organic aerosol formation from isoprene
Jason D. Surratt,Arthur W. H. Chan,Nathan C. Eddingsaas,Man Nin Chan,C. L. Loza,A. J. Kwan,S. P. Hersey,Richard C. Flagan,Paul O. Wennberg,John H. Seinfeld +9 more
TL;DR: In this article, the role of epoxydiols of isoprene and methacryloylperoxynitrate (MPAN) in the formation of secondary organic aerosol (SOA) was identified.