Total OH reactivity as a constraint of model calculated peroxy radical production, and the catalytic efficiency of NOx in O3 production in a boreal forest environment.

M. Umar Javed1, Korbinian Hens1, Monica Martinez2, Dagmar Kubistin3,4, Anna Novelli1,5, Zeinab Hosaynali Beygi1, Raoul Axinte1, Anke Christine Nölscher1,6, Vinayak Sinha1,7, Wei Song1, Aaron Michael Johnson1, Janeen Auld1,8, Birger Bohn9, Rolf Sander2, Domenico Taraborrelli1,10, Jonathan Williams1, Horst Fischer2, Johannes Lelieveld1 and Hartwig Harder2, (1)Max Planck Institute for Chemistry, Mainz, Germany, (2)Max Planck Institute for Chemistry, Atmospheric Chemistry, Mainz, Germany, (3)Deutscher Wetterdienst (DWD), Hohenpeißenberg, Germany, (4)University of Wollongong, Wollongong, Australia, (5)Forschungszentrum Jülich, IEK8:Troposphere, Jülich, Germany, (6)California Institute of Technology, Division of Geological and Planetary Sciences, Pasadena, CA, United States, (7)Indian Institute of Science Education and Research, Mohali, India, (8)University of Windsor, Department of Chemistry and Biochemistry, Windsor, ON, Canada, (9)Institute of Energy and Climate Research, IEK-8, Forschungszentrum Jülich, Jülich, Germany, (10)Forschungszentrum Jülich, Institute of Energy and Climate Research, Troposphere (IEK-8), Jülich, Germany
Scientific Team Name: U. Javed, K. Hens, M. Martinez, D. Kubistin, A. Novelli, D. Marno, Z. H. Beygi, R. Axinte, A. C. Nölscher, V. Sinha, W. Song, A. Johnson, J. Auld, B. Bohn, R. Sander, D. Taraborrelli, J. Williams, H. Fischer, J. Lelieveld, and H. Harder