Vol. 26, issue 06, article # 7

Bizin M. A., Popova S. A., Chankina O. V., Makarov V. I., Shinkorenko M. P., Smolyakov B. S., Kutsenogii K. P. The effect of forest fires on mass concentration, disperse and chemical composition of atmospheric aerosols on a regional scale. // Optika Atmosfery i Okeana. 2013. V. 26. No. 06. P. 484-489 [in Russian].
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Abstract:

This paper presents the dynamics of principal chemical components of particulate matter in a smoke screen over Novosibirsk and its suburb resulting from forest fires of the Tomsk region and Krasnoyarsk territory. It has been found that the levels of submicron mass concentration of atmospheric aerosol (AA) increased significantly in 2012 as compared to 2010 and 2011. This increase is correlated with the high presence of organic matter in the atmosphere accompanied by the raised acidity and higher concentration of potassium K+ and formiate HCOO- ions. Changes in the element composition of AA are absent.

Keywords:

smoke emission, submicron mass concentration, organic carbon, ion composition

References:

1. Isidorov V.A. Organicheskaja himija atmosfery. SPb.: Himizdat, 2001. 351 p.
2. McMeeking G.R., Kreidenweis S.M., Lunden M., Carrillo J., Carrico C.M., Lee T., Herckes P., Engling G., Day D.E., Hand J., Brown N., Malm W.C., Collett J.L. Smoke impacted regional haze in California during the summer of 2002 // Agr. Forest. Meteorol. 2006. V. 137. P. 25–42.
3. Hodzic A., Madronich S., Bohn B., Massie S., Menut L., Wiedinmyer C. Wildfire particulate matter in Europe during summer 2003: meso-scale modeling of smoke emissions, transport and radiative effects // Atmos. Chem. Phys. 2007. V. 7. P. 4043–4064.
4. Isakov A.A, Anikin P.P., Elohov A.S., Kurbatov G.A. O harakteristikah dymov lesnyh i torfjanyh pozharov v Central'noj Rossii letom 2010 g. // Optika atmosf. i okeana. 2011. V. 24, N 6. P. 478–482.
5. Arshinov M.Ju., Belan B.D. Issledovanie dispersnogo sostava ajerozolja v periody vesennej dymki i lesnyh pozharov // Optika atmosf. i okeana. 2011. V. 24, N 6. P. 468–477.
6. Gorchakov G.I., Semutnikova E.G., Isakov A.A., Kopejkin V.M., Karpov A.V., Kurbatov G.A., Lezina E.A., Ponomareva T.Ja., Sokolov A.V. Moskovskaja dymnaja mgla 2010 g. Jekstremal'noe ajerozol'noe i gazovoe zagrjaznenie vozdushnogo bassejna Moskovskogo regiona // Optika atmosf. i okeana. 2011. V. 24, N 6. P. 452–458.
7. Bizin M.A., Kucenogij K.P., Kucenogij P.K., Makarov V.I. Avtomatizacija nefelometricheskih izmerenij massovoj koncentracii submikronnyh atmosfernyh ajerozolej // Optika atmosf. i okeana. 2007. V. 20, N 3. P. 291–296.
8. Johnson R.L., Huntzicker J.J. Analysis of volatilizable and elemental carbon in ambient aerosol // Proc. Carbonaceous Particles in the Atmosphere (edited by T. Novakov), 1979. Р. 10–13. Report LBL-9037, Lawrence Berkeley Laboratory, Berkeley, CA.
9. Armalis S.Ju., Nika A.K. Metodika opredelenija organicheskogo i jelementnogo ugleroda v atmosfernom ajerozole // Fizika atmosf. 1986. N 11. P. 155–159.
10. Makarov V.I., Koutsenogii K.P., Koutsenogii P.K. Daily and seasonal changes of organic and inorganic carbon content in atmospheric aerosol Novosibirsk region // J. Aerosol Sci. 1999. V. 30. P. S255–S256.
11. Smoljakov B.S., Kucenogij K.P., Pavljuk L.A., Filimonova S.N., Smirnova A.I., Makarov V.I., Prijdak N.V. Monitoring ionnogo sostava atmosfernyh ajerozolej i osadkov v Novosibirskoj oblasti v 1994–1997 gg. // Optika atmosf. i okeana. 1998. V. 11, N 7. P. 723–728.
12. Baryshev V.B., Bufetov N.S., Koutzenogii K.P., Makarov V.I., Smirnova A.I. Synchrotron radiation measurements of the elemental composition of Siberian aerosols // Nucl. Instrum. Methods Phys. Res. A. 1995. V. 359. P. 297.
13. HYSPLIT (HYbrid Single-Particle Lagrangian Integrated Trajectory) Model. URL: http://www.arl.noaa.gov/  HYSPLIT.php, NOAA Air Resources Laboratory.
14. Kucenogij K.P., Smirnova A.I. Metod obratnyh traektorij dlja identifikacii istochnikov atmosfernyh ajerozolej regional'nogo i global'nogo masshtabov // Optika atmosf. i okeana. 2001. V. 14, N 6–7. P. 510–514.
15. Kosmosnimki – monitoring pozharov. URL: http: //fires.kosmosnimki.ru.
16. Samsonov Ju.N., Belenko O.A., Ivanov V.A. Dispersnye i morfologicheskie harakteristiki dymovoj ajerozol'noj jemissii ot pozharov v boreal'nyh lesah Sibiri // Optika atmosf. i okeana. 2010. V. 23, N 6. P. 423–431.
17. Samsonov Y.N., Ivanov V.A., McRae D.J., Baker S.P. Chemical and dispersal characteristics of particulate emissions from forest fires in Siberia // Int. J. Wildland Fires. 2012. V. 21. P. 818–827.
18. Konev Je.V. Fizicheskie osnovy gorenija rastitel'nyh materialov. Novosibirsk: Nauka, 1977. 237 p.
19. Smoljakov B.S., Kucenogij K.P., Makarov V.I., Koval'skaja G.A., Smirnova A.I., Pavljuk L.A., Filimonova S.N. Vlijanie lesnyh pozharov na himicheskij sostav ajerozolja // Optika atmosf. i okeana. 1999. V. 12, N 6. P. 523–527.