Iodine chemistry in the chemistry-climate model SOCOL-AERv2-I

被引:11
|
作者
Karagodin-Doyennel, Arseniy [1 ,2 ]
Rozanov, Eugene [1 ,2 ,3 ]
Sukhodolov, Timofei [2 ,3 ,4 ]
Egorova, Tatiana [2 ]
Saiz-Lopez, Alfonso [5 ]
Cuevas, Carlos A. [5 ]
Fernandez, Rafael P. [5 ,6 ]
Sherwen, Tomas [7 ,8 ]
Volkamer, Rainer [1 ,9 ,10 ,11 ]
Koenig, Theodore K. [9 ,10 ]
Giroud, Tanguy [1 ]
Peter, Thomas [1 ]
机构
[1] Inst Atmospher & Climate Sci IAC ETH, Zurich, Switzerland
[2] Phys Meteorol Observ Davos, World Radiat Ctr PMOD WRC, Davos, Switzerland
[3] St Petersburg State Univ, St Petersburg, Russia
[4] Univ Nat Resources & Life Sci, Inst Meteorol & Climatol, Vienna, Austria
[5] IQFR CSIC, Dept Atmospher Chem & Climate, Madrid, Spain
[6] Natl Res Council ICB CONICET, FCEN UNCuyo, Inst Interdisciplinary Sci, Mendoza, Argentina
[7] Univ York, Natl Ctr Atmospher Sci, York YO10 5DD, N Yorkshire, England
[8] Univ York, Wolfson Atmospher Chem Labs, York YO10 5DD, N Yorkshire, England
[9] Univ Colorado, Dept Chem, Boulder, CO 80309 USA
[10] Cooperat Inst Res Environm Sci, Boulder, CO 80309 USA
[11] Paul Scherrer Inst, Lab Radiochem & Environm Chem, CH-5232 Villigen, Switzerland
基金
美国国家科学基金会;
关键词
ABSORPTION CROSS-SECTIONS; STRATOSPHERIC OZONE; TROPOSPHERIC OZONE; AEROSOL EXTINCTION; HALOGEN CHEMISTRY; POTENTIAL IMPACT; IN-SITU; BROMINE; EMISSIONS; LAYER;
D O I
10.5194/gmd-14-6623-2021
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
In this paper, we present a new version of the chemistry-climate model SOCOL-AERv2 supplemented by an iodine chemistry module. We perform three 20-year ensemble experiments to assess the validity of the modeled iodine and to quantify the effects of iodine on ozone. The iodine distributions obtained with SOCOL-AERv2-I agree well with AMAX-DOAS observations and with CAM-chem model simulations. For the present-day atmosphere, the model suggests that the iodine-induced chemistry leads to a 3 %-4 % reduction in the ozone column, which is greatest at high latitudes. The model indicates the strongest influence of iodine in the lower stratosphere with 30 ppbv less ozone at low latitudes and up to 100 ppbv less at high latitudes. In the troposphere, the account of the iodine chemistry reduces the tropospheric ozone concentration by 5 %-10 % depending on geographical location. In the lower troposphere, 75 % of the modeled ozone reduction originates from inorganic sources of iodine, 25 % from organic sources of iodine. At 50 hPa, the results show that the impacts of iodine from both sources are comparable. Finally, we determine the sensitivity of ozone to iodine by applying a 2-fold increase in iodine emissions, as it might be representative for iodine by the end of this century. This reduces the ozone column globally by an additional 1.5 %-2.5 %. Our results demonstrate the sensitivity of atmospheric ozone to iodine chemistry for present and future conditions, but uncertainties remain high due to the paucity of observational data of iodine species.
引用
收藏
页码:6623 / 6645
页数:23
相关论文
共 50 条
  • [1] The representation of ionospheric potential in the global chemistry-climate model SOCOL
    Karagodin, Arseniy
    Rozanov, Eugene
    Mareev, Evgeny
    Mironova, Irina
    Volodin, Evgeny
    Golubenko, Ksenia
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 697
  • [2] Chemistry-climate model SOCOL: a validation of the present-day climatology
    Egorova, T
    Rozanov, E
    Zubov, V
    Manzini, E
    Schmutz, W
    Peter, T
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2005, 5 : 1557 - 1576
  • [3] Improved tropospheric and stratospheric sulfur cycle in the aerosol-chemistry-climate model SOCOL-AERv2
    Feinberg, Aryeh
    Sukhodolov, Timofei
    Luo, Bei-Ping
    Rozanov, Eugene
    Winkel, Lenny H. E.
    Peter, Thomas
    Stenke, Andrea
    [J]. GEOSCIENTIFIC MODEL DEVELOPMENT, 2019, 12 (09) : 3863 - 3887
  • [4] Technical Note: Chemistry-climate model SOCOL: version 2.0 with improved transport and chemistry/microphysics schemes
    Schraner, M.
    Rozanov, E.
    Poberaj, C. Schnadt
    Kenzelmann, P.
    Fischer, A. M.
    Zubov, V.
    Luo, B. P.
    Hoyle, C. R.
    Egorova, T.
    Fueglistaler, S.
    Broennimann, S.
    Schmutz, W.
    Peter, T.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2008, 8 (19) : 5957 - 5974
  • [5] Assessment of the ozone and temperature variability during 1979-1993 with the chemistry-climate model SOCOL
    Rozanov, E
    Schraner, M
    Schnadt, C
    Egorova, T
    Wild, M
    Ohmura, A
    Zubov, V
    Schmutz, W
    Peter, T
    [J]. GREENHOUSE GASES, OZONE, AND ELECTRODYNAMICS; THEIR CHANGES IN THE MIDDLE ATMOSPHERE AND LOWER THERMOSPHERE, 2005, 35 (08): : 1375 - 1384
  • [6] The SOCOL version 3.0 chemistry-climate model: description, evaluation, and implications from an advanced transport algorithm
    Stenke, A.
    Schraner, M.
    Rozanov, E.
    Egorova, T.
    Luo, B.
    Peter, T.
    [J]. GEOSCIENTIFIC MODEL DEVELOPMENT, 2013, 6 (05) : 1407 - 1427
  • [7] The atmospheric effects of October 2003 solar proton event simulated with the chemistry-climate model SOCOL using complete and parameterized ion chemistry
    Egorova, T.
    Rozanov, E.
    Ozolin, Y.
    Shapiro, A.
    Calisto, M.
    Peter, Th
    Schmutz, W.
    [J]. JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2011, 73 (2-3) : 356 - 365
  • [8] Combined chemistry-climate model of the atmosphere
    V. Ya. Galin
    S. P. Smyshlyaev
    E. M. Volodin
    [J]. Izvestiya, Atmospheric and Oceanic Physics, 2007, 43 : 399 - 412
  • [9] Simulation of Changes in Global Ozone and Atmospheric Dynamics in the 21st Century with the Chemistry-Climate Model SOCOL
    Zubov, V. A.
    Rozanov, E. V.
    Rozanova, I. V.
    Egorova, T. A.
    Kiselev, A. A.
    Karol', I. L.
    Schmutz, V.
    [J]. IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS, 2011, 47 (03) : 301 - 312
  • [10] Simulation of changes in global ozone and atmospheric dynamics in the 21st century with the chemistry-climate model SOCOL
    V. A. Zubov
    E. V. Rozanov
    I. V. Rozanova
    T. A. Egorova
    A. A. Kiselev
    I. L. Karol’
    V. Schmutz
    [J]. Izvestiya, Atmospheric and Oceanic Physics, 2011, 47 : 301 - 312