Found 547 publications.
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An important contribution to springtime Arctic aerosol from biomass burning in Russia.
Warnecke, C.; Froyd, K.D.; Brioude, J.; Bahreini, R.; Brock, C.A.; Cozic, J.; De Gouw, J.A.; Fahey, D.W.; Ferrare, R.A.; Holloway, J.; Middlebrook, A.M.; Miller, L.; Montzka, S.A.; Schwarz, J.P.; Spackman, J.R.; Stohl, A.
A lagrangian case study of the evolution of aerosol composition from a boreal fire plume during the ARCTAS campaign.
Cubison, M.; Jimenez, J.L.; Sueper, D.; Burkhart, J.F.; Wisthaler, A.; Mikovny, T.; Apel, E.C.,Hills, A.J.; Weinheimer, A.; Knapp, D.J.; Emmons, L.K.; Fuelberg, H.E.; Sessions, W.; Diskin, G.S.; Sachse, G.W.; Huey, L.G.
Plume processing during long-range transport of pollutants to the Arctic in summer 2008.
Law, K.; Auby, A.; Ravetta, F.; Burkhart, J.F.; Stohl, A.; Roiger, A.; Schlager, H.; Ancellet, G.; Pommier, M.; Arnold, S.R.; Turquety, S.
Springtime halogen oxidation determines the variability in surface ozone concentrations throughout the Arctic and subarctic.
Gilman, J.B.; Lerner, B.M.; Kuster, W.C.; Goldan, P.D.; Montzka, S.A.; Miller, B.R.; Miller, L.; Oltmans, S.J.; Ryerson, T.B.; Burkhart, J.F.; Stohl, A.; Williams, E.J.; deGouw, J.
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