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Original Research Articles

Tropospheric ozone over Siberia in spring 2010: remote influences and stratospheric intrusion

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Article: 19688 | Received 10 Sep 2012, Accepted 06 Apr 2013, Published online: 04 Jun 2013

References

  • Alvarado M. J , Logan J. A , Mao J , Apel E , Riemer D , co-authors . Nitrogen oxides and PAN in plumes from boreal fires during ARCTAS-B and their impact on ozone: an integrated analysis of aircraft and satellite observations. Atmos. Chem. Phys. 2010; 10: 9739–9760.
  • Ancellet G , Beekmann M , Papayannis A . Impact of cutoff low development on downward transport of ozone in the troposphere. J. Geophys. Res. 1994; 99: 3451–3468.
  • Andreae M. O , Merlet P . Emissions of trace gases and aerosols from biomass burning. Global Biogeochem. Cycles. 2001; 15: 955–966.
  • Antokhin P. N , Arshinov M. Yu , Belan B. D , Davydov D. K , Zhidovkin E. V , co-authors . OPTIK-É AN-30 aircraft laboratory for studies of the atmospheric composition. J. Atmos. Ocean. Technol. 2011; 29: 64–75.
  • Beekmann M , Ancellet G , Blonsky S , De Muer D , Ebel A , co-authors . Regional and global tropopause fold occurrence and related ozone flux across the tropopause. J. Atmos. Chem. 1997; 28: 29–44.
  • Belan B. D , Zadde G. O , Ivlev G. A , Krasnov O. A , Pirogov V. A , co-authors . Complex assessment of the conditions of the air basin over Norilsk industrial region. Part 5. Admixtures in the ground air layer. The correspondence of the air composition to hygienic standards. Recommendations. Opt. Atmos. Okeana. 2007; 20(2): 132–142.
  • Browning K. A . The dry intrusion perspective of extra-tropical cyclone development. Meteorol. Appl. 1997; 4: 317–324.
  • Cristofanelli P , Bonasoni P , Collins W , Feichter J , Forster C , co-authors . Stratosphere-to-troposphere transport: a model and method evaluation. J. Geophys. Res. 2003; 108: 8525.
  • Collins W. J , Derwent R. G , Johnson C. E , Stevenson D. S . The impact of human activities on the photochemical production and destruction of tropospheric ozone. Q.J.R. Meteorol. Soc. 2000; 126: 1925–1951.
  • Dlugokencky E. J , Myers R. C , Lang P. M , Masarie K. A , Crotwell , co-authors . Conversion of NOAA atmospheric dry air CH4 mole fractions to a gravimetrically prepared standard scale. J. Geophys. Res. 2005; 110: D18306.
  • Elansky N. F . Russian Studies of Atmospheric Ozone in 2007–2011. Izv. Atmos. Ocean. Phys. 2012; 48(3): 281–298.
  • Engvall-Stjernberg A.-C , Skorokhod A , Elansky N , Paris J.-D , Nédélec P , co-authors . Low surface ozone in Siberia. Tellus B. 2012; 64: 11607.
  • Esler J. G , Haynes P. H , Law K. S , Barjat H , Dewey K , co-authors . Transport and mixing between airmasses in cold frontal regions during dynamics and chemistry of frontal zones (DCFZ). J. Geophys. Res. 2003; 108(D4): 4142.
  • Giglio L , Descloitres J , Justice C. O , Kaufman Y . An enhanced contextual fire detection algorithm for MODIS. Rem. Sens. Environ. 2003; 87: 273–282.
  • Gilman J. B , Burkhart J. F , Lerner B. M , Williams E. J , Kuster W. C , co-authors . Ozone variability and halogen oxidation within the Arctic and sub-Arctic springtime boundary layer. Atmos. Chem. Phys. 2010; 10: 10223–10236.
  • Hauglustaine D. A , Lathiere J , Szopa S , Folberth G. A . Future tropospheric ozone simulated with a climate-chemistry-biosphere model. Geophys. Res. Lett. 2005; 32: L24807.
  • Holton J. R , Haynes P. H , McIntyre M. E , Douglass A. R , Rood R. B , co-authors . Stratosphere-troposphere exchange. Rev. Geophys. 1995; 33(4): 403–439.
  • Hemispheric Transport of Air Pollution Working Group (HTAP). Dentener F , Keating T , Akimoto H . Hemispheric transport of air pollution: Part A: ozone and particulate matter. Air pollution Studies No. 17. 2010; Geneva: United Nations. 278.
  • Ishijima K , Patra P. K , Takigawa M , Machida T , Matsueda H , co-authors . Stratospheric influence on the seasonal cycle of nitrous oxide in the troposphere as deduced from aircraft observations and model simulations. J. Geophys. Res. 2010; 115: D20308.
  • Jaffe D. A , Wigder N. L . Ozone production from wildfires: a critical review. Atmos. Environ. 2012; 51: 1–10.
  • James P , Stohl A , Forster C , Eckhardt S , Seibert P , co-authors . A 15-year climatology of stratosphere–troposphere exchange with a Lagrangian particle dispersion model: 2. Mean climate and seasonal variability. J. Geophys. Res. 2003; 108: 8522.
  • Korontzi S , McCarty J , Loboda T , Kumar S , Justice C . Global distribution of agricultural fires in croplands from 3 years of moderate resolution imaging spectroradiometer (MODIS) data. Global Biogeochem. Cycles. 2006; 20(2): GB2021.
  • Meloen J , Siegmund P , van Velthoven P , Kelder H , Sprenger M , co-authors . Stratosphere-troposphere exchange: a model and method intercomparison. J. Geophys. Res. 2003; 108(D12): 8526.
  • Nédélec P , Cammas J.-P , Thouret V , Athier G , Cousin J.-M , co-authors . An improved infrared carbon monoxide analyser for routine measurements aboard commercial Airbus aircraft: technical validation and first scientific results of the MOZAIC III programme. Atmos. Chem. Phys. 2003; 3: 1551–1564.
  • Oltmans S. J , Lefohn A. S , Harris J. M , Tarasick D. W , Thompson A. M , co-authors . Enhanced ozone over western North America from biomass burning in Eurasia during April 2008 as seen in surface and profile observations. Atmos. Environ. 2010; 44: 4497–4509.
  • Paris J.-D , Ciais P , Nédélec P , Ramonet M , Golytsin G , co-authors . The YAK-AEROSIB transcontinental aircraft campaigns: new insights on the transport of CO2, CO and O3 across Siberia. Tellus B. 2008; 60(4): 551–568.
  • Paris J.-D , Ciais P , Nédélec P , Stohl A , Belan B. D , co-authors . New insights on the chemical composition of the Siberian air shed from the YAK AEROSIB aircraft campaigns. B. Am. Meteorol. Soc. 2010a; 91(5): 625–641.
  • Paris J.-D , Stohl A , Ciais P , Nédélec P , Belan B. D , co-authors . Source-receptor relationships for airborne measurements of CO2, CO and O3 above Siberia: a cluster-based approach. Atmos. Chem. Phys. 2010b; 10: 1671–1687.
  • Parrish D. D , Trainer M , Holloway J. S , Yee J. E , Warshawsky M. S , co-authors . Relationships between ozone and carbon monoxide at surface sites in the North Atlantic region. J. Geophys. Res. 1998; 103(D11): 13357–13376.
  • Pommier M , Clerbaux C , Law K. S , Ancellet G , Bernath P , co-authors . Analysis of IASI tropospheric O3 data over the Arctic during POLARCAT campaigns in 2008. Atmos. Chem. Phys. 2012; 12: 7371–7389.
  • Pommier M , Law K. S , Clerbaux C , Turquety S , Hurtmans D , co-authors . IASI carbon monoxide validation over the Arctic during POLARCAT spring and summer campaigns. Atmos. Chem. Phys. 2010; 10: 10655–10678.
  • Real E , Law K. S , Weinzierl B , Fiebig M , Petzold A , co-authors . Processes influencing ozone levels in Alaskan forest fire plumes during long-range transport over the North Atlantic. J. Geophys. Res. 2007; 112(D10): D10S41.
  • Real E , Pisso I , Law K. S , Legras B , Bousserez N , co-authors . Toward a novel high-resolution modeling approach for the study of chemical evolution of pollutant plumes during long-range transport. J. Geophys. Res. 2010; 115: D12302.
  • Reeves C. E , Penkett S. A , Bauguitte S , Law K. S , Evans M. J , co-authors . Potential for photochemical ozone formation in the troposphere over the North Atlantic as derived from aircraft observations during ACSOE. J. Geophys. Res. 2002; 107(D23): 4707.
  • Reischl G. P , Majerowicz A , Ankilow A , Eremenko S , Mavliev R . Comparison of the Novosibirsk automated diffusion battery with the Vienna electromobility spectrometer. J. Aerosol Sci. 1991; 22: 223–228.
  • Roelofs G. J , Kentarchos A. S , Trickl T , Stohl A , Collins W. J , co-authors . Intercomparison of tropospheric ozone models: Ozone transport in a complex tropopause folding event. J. Geophys. Res. 2003; 108(D12): 8529.
  • Seinfeld J. H , Pandis S. N . Atmospheric chemistry and physics: From air pollution to climate change. 2006; Hoboken, NJ: John Wiley. 2nd ed.
  • Shakina N. P , Ivanova A. R , Elansky N. F , Markova T. A . Transcontinental observations of surface ozone concentration in the TROICA experiments: 2. The effect of the stratosphere-troposphere exchange. Izv. Atmos. Ocean. Phys. 2001; 37(Suppl. 1): S39–S48.
  • Sommar J , Andersson M. E , Jacobi H.-W . Circumpolar measurements of speciated mercury, ozone and carbon monoxide in the boundary layer of the Arctic Ocean. Atmos. Chem. Phys. 2010; 10: 5031–5045.
  • Sprenger M , Wernli H . A northern hemispheric climatology of cross-tropopause exchange for the ERA15 time period (1979–1993). J. Geophys. Res. 2003; 108(D12): 8521.
  • Stohl A . A one-year Lagrangian “climatology” of airstreams in the northern hemisphere troposphere and lowermost stratosphere. J. Geophys. Res. 2001; 106(D7): 7263–7279.
  • Stohl A , Berg T , Burkhart J. F , Forster C , Herber A , co-authors . Arctic smoke: record high air pollution levels in the European Arctic due to agricultural fires in Eastern Europe in spring. Atmos. Chem. Phys. 2007; 7: 511–534.
  • Stohl A , Forster C , Frank A , Seibert P , Wotawa G . Technical note: the Lagrangian particle dispersion model FLEXPART version 6.2. Atmos. Chem. Phys. 2005; 5: 2461–2474.
  • Stohl A , Hittenberger M , Wotawa G . Validation of the Lagrangian particle dispersion model FLEXPART against large scale tracer experiment data. Atmos. Environ. 1998; 24: 4245–4264.
  • Stohl A , Prata A. J , Eckhardt S , Clarisse L , Durant A , co-authors . Determination of time- and height-resolved volcanic ash emissions and their use for quantitative ash dispersion modeling: the 2010 Eyjafjallajökull eruption. Atmos. Chem. Phys. 2011; 11: 4333–4351.
  • Stohl A , Wernli H , James P , Bourqui M , Forster C , co-authors . A new perspective of stratosphere-troposphere exchange. Bull. Am. Meteorol. Soc. 2003; 84(11): 1565–1574.
  • Thomas J. L , Raut J.-C , Law K. S , Marelle L , Ancellet G , co-authors . Pollution transport from North America to Greenland during summer 2008. Atmos. Chem. Phys. 2013; 13: 3825–3848.
  • Vaughan G , Garland W. E , Dewey K. J , Gerbig C . Aircraft measurements of a warm conveyor belt—a case study. J. Atmos. Chem. 2003; 46: 117–129.
  • Verma S , Worden J , Pierce B , Jones D. B. A , Al-Saadi J , co-authors . Ozone production in boreal fire smoke plumes using observations from the tropospheric emission spectrometer and the ozone monitoring instrument. J. Geophys. Res. 2009; 114: D02303.
  • Wang Y , Munger J. W , Xu S , McElroy M. B , Hao J , co-authors . CO2 and its correlation with CO at a rural site near Beijing: implications for combustion efficiency in China. Atmos. Chem. Phys. 2010; 10: 8881–8897.
  • Wernli H , Sprenger M . Identification and ERA-15 climatology of potential vorticity streamers and cutoffs near the extratropical tropopause. J. Atmos. Sci. 2007; 64: 1569–1586.
  • Wild O , Pochanart P , Akimoto H . Trans-Eurasian transport of ozone and its precursors. J. Geophys. Res. 2004; 109: D11302.
  • Zuev V. E , Belan B. D , Kabanov D. M , Kovalevskii V. K , Luk'ianov O. I , co-authors . The Optik-E AN-30 laboratory-airplane for ecological studies. Opt. Atmos. Okeana. 1992; 5: 1012–1021.