intercontinentaltransportofbiomassburningpollutantsoverthe ......s1. production of o 3 (in pptv s-1)...

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Supplement of Atmos. Chem. Phys., 18, 6887–6906, 2018 https://doi.org/10.5194/acp-18-6887-2018-supplement © Author(s) 2018. This work is distributed under the Creative Commons Attribution 4.0 License. Supplement of Intercontinental transport of biomass burning pollutants over the Mediter- ranean Basin during the summer 2014 ChArMEx-GLAM airborne cam- paign Vanessa Brocchi et al. Correspondence to: Gisèle Krysztofiak (gisele.krysztofi[email protected]) The copyright of individual parts of the supplement might differ from the CC BY 4.0 License.

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Page 1: Intercontinentaltransportofbiomassburningpollutantsoverthe ......S1. Production of O 3 (in pptv s-1) between 23 July and 6 August 2014 at 5.5 km in altitude simulated by the MOCAGE

Supplement of Atmos. Chem. Phys., 18, 6887–6906, 2018https://doi.org/10.5194/acp-18-6887-2018-supplement© Author(s) 2018. This work is distributed underthe Creative Commons Attribution 4.0 License.

Supplement of

Intercontinental transport of biomass burning pollutants over the Mediter-ranean Basin during the summer 2014 ChArMEx-GLAM airborne cam-paignVanessa Brocchi et al.

Correspondence to: Gisèle Krysztofiak ([email protected])

The copyright of individual parts of the supplement might differ from the CC BY 4.0 License.

Page 2: Intercontinentaltransportofbiomassburningpollutantsoverthe ......S1. Production of O 3 (in pptv s-1) between 23 July and 6 August 2014 at 5.5 km in altitude simulated by the MOCAGE

S1. Production of O3 (in pptv s-1) between 23 July and 6 August 2014 at 5.5 km in altitude

simulated by the MOCAGE model. The red ellipses are used to follow the production of O3

along the trajectory from Siberia to the MB.

Page 3: Intercontinentaltransportofbiomassburningpollutantsoverthe ......S1. Production of O 3 (in pptv s-1) between 23 July and 6 August 2014 at 5.5 km in altitude simulated by the MOCAGE

S2. Concentrations of O3 (in ppbv) between 23 July and 6 August 2014 at 5.5 km in altitude simulated

by the MOCAGE model. The red ellipses are used to follow the biomass burning trace in O3 along the

trajectory from Siberia to the MB.