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Virkkula A, Hirsikko A, Vana M, Aalto PP, Hillamo RE, Kulmala M:
"Charged particle size distributions and analysis of particle formation events at the Finnish Antarctic research station Aboa",
Boreal Environmental Research 12 (3) : 397-408 (Jun 2007)
References included in article: 35 records found.
| Order of appearence | Full citation | SRCosmos Link |
| 1 | Arimoto R, Hogan A, Grube P, Davis D, Webb J, Schloesslin C, Sage S, Raccah F, 2004. Major ions and radionuclides in aerosol particles from the South Pole during ISCAT-2000. Atmos. Environ. 38: 5473–5484. | |
| 2 | Bergin MH, Meyerson EA, Dibb JE, Mayewski PA, 1998. Relationship between continuous aerosol measurements and firn core chemistry over a 10-year period at the South Pole. Geophys. Res. Lett. 25: 1189–1192. | |
| 3 | Clarke AD, Davis D, Kapustin VN, Eisele F, Chen G, Paluch I, Lenschow D, Bandy AR, Thornton D, Moore K, Mauldin L, Tanner D, Litchy M, Carroll MA, Collins J, Albercook G, 1998. Particle nucleation in the tropical boundary layer and its coupling to marine sulfur sources. Science 282: 89–92. | |
| 4 | Dal-Maso M, Kulmala M, Riipinen I, Wagner R, Hussein T, Aalto PP, Lehtinen KEJ, 2005. Formation and growth of fresh atmospheric aerosols: eight years of aerosol size distribution data from SMEAR II, Hyytiala, Finland. Boreal Env. Res. 10: 323–336. | |
| 5 | Gras JL, 1993. Condensation nucleus size distribution at Mawson, Antarctica: seasonal cycle. Atmos. Environ. 27A: 1417–1425. | |
| 6 | Hillamo R, Allegrini I, Sparapani R, Kerminen V, -M. 1998. Mass size distributions and precursor gas concentrations of major inorganic ions in Antarctic aerosol. Int. J. Environ. Anal. Chem. 71: 353–372. | |
| 7 | Hirsikko A, Laakso L, Horrak U, Aalto PP, Kerminen V.- M. & Kulmala M. 2005. Annual and size dependent variation of growth rates and ion concentrations in boreal forest. Boreal Env. Res. 10: 357–369. | |
| 8 | Hirsikko A, Bergman T, Laakso L, Dal-Maso M, Riipinen I, Horrak U, Kulmala M, 2007. Identification and classification of the formation of intermediate ions measured in boreal forest. Atmos. Chem. Phys. 7: 201–210. | |
| 9 | Jaenicke R, Dreiling V, Lehmann E, Koutsenoguii PK, Stingl J, 1992. Condensation nuclei at the German Antarctic Station “Georgvon Neumayer”. Tellus B 44: 311–317. | |
| 10 | Jourdain B, Legrand M, 2002. Year-round records of bulk and size-segregated aerosol composition and HCl and HNO3 levels in the Dumont d’Urville (coastal Antarctica) atmosphere: Implications for sea-salt aerosol fractionation in the winter and summer. J. Geophys. Res. 107(D22), 4645, doi: 10.1029/2002JD002471. | |
| 11 | Koponen IK, Virkkula A, Hillamo R, Kerminen V.- M. & Kulmala M. 2003. Number size distributions and concentrations of the continental summer aerosols in Queen Maud Land, Antarctica. J. Geophys. Res. 108(D18), 4587, doi:10.1029/2003JD003614. | |
| 12 | Korhonen P, Kulmala M, Laaksonen A, Viisanen Y, Mc-Graw R, Seinfeld JH, 1999. Ternary nucleation of H2SO4, NH3, and H2O in the atmosphere. J. Geophys. Res. 104: 26349–26354. | |
| 13 | Kulmala M, 2003. How particles nucleate and grow. Science 302: 1000–1001. | |
| 14 | Kulmala M, Kerminen V.- M., Anttila T., Laaksonen A. & O-Dowd C.D. 2004a. Organic aerosol formation via sulphate cluster activation. J. Geophys. Res. 109(D4), 4205, doi: 10.1029/2003JD003961. | |
| 15 | Kulmala M, Vehkamaki H, Petaja T, Dal-Maso M, Lauri A, Kerminen V.- M., Birmili W. & Mc-Murry P. 2004b. Formation and growth rates of ultrafine atmospheric particles: a review of observations. J. Aerosol Sci. 35: 143–176. | |
| 16 | Kulmala M, Laakso L, Lehtinen KEJ, Riipinen I, Dal-Maso M, Anttila T, Kerminen V.- M., Horrak U., Vana M. & Tammet H. 2004c. Initial steps of aerosol growth. Atmos. Chem. Phys. 4: 2553–2560. | |
| 17 | Kulmala M, Petaja T, Monkkonen P, Koponen IK, Dal-Maso M, Aalto PP, Lehtinen KEJ, & Kerminen V.- M. 2005. On the growth of nucleation mode particles: source rates of condensable vapor in polluted and clean environments. Atmos. Chem. Phys. 5: 409–416. | |
| 18 | Kulmala M, Lehtinen KEJ, Laaksonen A, 2006. Cluster activation theory as an explanation of the linear dependence between formation rate of 3 nm particles and sulphuric acid concentration. Atmos. Chem. Phys. 6: 787–793. | |
| 19 | Laakso L, Petaja T, Lehtinen KEJ, Kulmala M, Paatero J, Horrak U, Tammet H, Joutsensaari J, 2004a. Ion production rate in a boreal forest based on ion, particle and radiation measurements. Atmos. Chem. Phys. 4: 1933–1943. | |
| 20 | Laakso L, Anttila T, Lehtinen KEJ, Aalto PP, Kulmala M, Horrak U, Paatero J, Hanke M, Arnold F, 2004b. Kinetic nucleation and ions in boreal particle formation events. Atmos. Chem. Phys. 4: 2353–2366. | |
| 21 | Laakso L, Gagne S, Petaja T, Hirsikko A, Aalto PP, Kulmala M, & Kerminen V.- M. 2007. Detecting charging state of ultra-fine particles: instrumental development and ambient measurements. Atmos. Chem. Phys. 6: 1333–1345. | |
| 22 | Lihavainen H, Komppula M, Kerminen V.- M., Jarvinen H., Viisanen Y., Lehtinen K., Vana M. & Kulmala M. 2007. Size distributions of atmospheric ions inside clouds and in cloud-free air at a remote continental site. Boreal Env. Res. 12: 337–344. | |
| 23 | Mertes S, Schroder F, Wiedensohler A, 1995. The particle detection efficiency curve of the 30 TSI-3010 CPC as a function of temperature difference between saturator and condenser. Aerosol Sci. Technol. 23: 257–261. | |
| 24 | Mirme A, Tamm E, Mordas G, Vana M, Uin J, Mirme S, Bernotas T, Laakso L, Hirsikko A, Kulmala M, 2007. A wide-range multi-channel Air Ion Spectrometer. Boreal Env. Res. 12: 247–264. | |
| 25 | O-Dowd S, Jimenz J, Bahreini R, Flagan R, Seinfeld J, Hameri K, Pirjola L, Kulmala M, Hoffmann T, 2002. Marine aerosol formation from biogenic iodine emissions. Nature 417: 632–636. | |
| 26 | Rankin A, Wolff E, 2003. A year-long record of size-segregated aerosol composition at Halley Antarctica. J. Geophys. Res. 108(D24), 4775, doi:10.1029/2003JD003993. | |
| 27 | Shaw GE, 1988. Antarctic aerosols: a review. Rev. Geophys. 26: 89–112. | |
| 28 | Tammet H, 1995. Size and mobility of nanometer particles, clusters and ions. J. Aerosol Sci. 26: 459–475. | |
| 29 | Tammet H, 1998. Reduction of air ion mobility to standard conditions. J. Geophys. Res. 103: 13933–13937. | |
| 30 | Teinila K, Kerminen V.- M. & Hillamo R. 2000. A study of size-segregated aerosol chemistry in the Antarctic atmosphere. J. Geophys. Res. 105: 3893–3904. | |
| 31 | Vana M, Tamm E, Horrak U, Mirme A, Tammet H, Laakso L, Aalto PP, Kulmala M, 2006. Charging state of atmospheric nanoparticles during the nucleation burst events. Atmos. Res. 82: 536–546. | |
| 32 | Virkkula A, Koponen IK, Teinila K, Hillamo R, Kerminen V.- M. & Kulmala M. 2006a. Effective real refractive index of dry aerosols in the Antarctic boundary layer. Geophys. Res. Lett. 33, L06805, doi:10.1029/ 2005GL024602. | |
| 33 | Virkkula A, Teinila K, Hillamo R, Kerminen V.- M., Saarikoski S., Aurela M., Koponen I.K. & Kulmala M. 2006b. Chemical size distributions of boundary layer aerosol over the Atlantic Ocean and at an Antarctic site. J. Geophys. Res. 111, D05306, doi:10.1029/ 2004JD004958. | |
| 34 | Weber RJ, Marti JJ, Mc-Murry PH, Eisele FL, Tanner DJ, Jefferson A, 1996. Measured atmospheric new particle formation rates: Implications for nucleation mechanisms. Chem. Eng. Comm. 151: 53–64. | |
| 35 | Yu F, 2006. From molecular clusters to nanoparticles: Second-generation ion-mediated nucleation model. Atmos. Chem. Phys. 6: 5193–5211. |