1. N. Evangeliou, Y. Balkanski, W. M. Hao, A. Petkov, R.P. Silverstein, R. Corley, B. L. Nordgren, S. P. Urbanski, S. Eckhardt, A. Stohl, P. Tunved, S. Crepinsek, A. Jefferson, S. Sharma, J. K. Nojgaard, and H. Skov, “Wildfires in Northern Eurasia affect the budget of black carbon in the Arctic—a 12-year retrospective synopsis (2002–2013),” Atmos. Chem. Phys. 16 (12), 7587–7604 (2016).
2. K. Huang, J. S. Fu, V. Y. Prikhodko, J. M. Storey, A. Romanov, E. L. Hodson, J. Cresko, I. Morozova, Y. Ignatieva, and J. Cabaniss, “Russian anthropogenic black carbon: emission reconstruction and Arctic black carbon simulation,” J. Geophys. Res. Atmos. 120 (2015). doi 10.1002/2015JD023358
3. I. A. Gorchakova and I. I. Mokhov, “The radiative and thermal effects of smoke aerosol over the region of Moscow during the summer fires of 2010,” Izv. Atmos. Ocean. Phys. 48 (5), 496–503 (2012).
4. M. V. Panchenko, T. B. Zhuravleva, V. S. Kozlov, I. M. Nasrtdinov, V. V. Pol’kin, S. A. Terpugova, and D. G. Chernov, “Estimation of aerosol radiation effects under background and smoke-haze atmospheric conditions over Siberia from empirical data,” Rus. Meteorol. Hydrol. 41 (2), 104–111 (2016). doi 10.3103/S1068373916020047
5. G. I. Gorchakov, S. A. Sitnov, M. A. Sviridenkov, E. G. Semoutnikova, A. S. Emilenko, A. A. Isakov, V. M. Kopeikin, A. V. Karpov, I. A. Gorchakova, K. S. Verichev, G. A. Kurbatov, and T. Ya. Ponomareva, “Satellite and ground-based monitoring of smoke in the atmosphere during the summer wildfires in European Russia in 2010 and Siberia in 2012,” Int. J. Remote Sens. 35 (15), 5698–5721 (2014).