Evolution of ozone and ozone-related species over Kiruna during the SOLVE/THESEO 2000 campaign retrieved from ground-based millimeter-wave and infrared observations -: art. no. 8308

被引:24
作者
Kopp, G
Berg, H
Blumenstock, T
Fischer, H
Hase, F
Hochschild, G
Höpfner, MH
Kouker, W
Reddmann, T
Ruhnke, R
Raffalski, U
Kondo, Y
机构
[1] Univ Karlsruhe, Forschungszentrum Karlsruhe, Inst Meteorol & Climate Res, D-76021 Karlsruhe, Germany
[2] Swedish Inst Space Phys, S-98128 Kiruna, Sweden
[3] Univ Tokyo, Adv Sci & Technol Res Ctr, Tokyo 1538904, Japan
关键词
FTIR; millimeter wave radiometry; ozone loss; denitrification; chlorine activation; diabatic descent;
D O I
10.1029/2001JD001064
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
[1] Vertical profiles of stratospheric ozone and ozone-related trace gases were measured in winter 1999/2000 using the ground-based millimeter-wave radiometer MIRA 2 and a Fourier-transform infrared spectrometer (FTIR) located at the Swedish Institute of Space Physics at Kiruna. The MIRA 2 measurements covered all three SOLVE/THESEO 2000 flight phases. An almost complete time series of O-3 profiles and complementary profiles of ClO, HNO3, and N2O were achieved. Profiles of O-3, HCl, HNO3, and N2O, as well as stratospheric column amounts of NO2, ClONO2, and ClO, were obtained from the continuous ground-based FTIR measurements between January and March 2000. From the measurements of N2O and HF, a diabatic subsidence inside the polar vortex of about 1.2 km between January and March for altitudes of about 20 km was deduced. On 26 and 28 January, an uptake of about 25% of stratospheric HNO3 by polar stratospheric clouds (PSCs) could be measured and between January and March, an significant denitrification of the lower stratosphere was derived from the measurements. Strong chlorine activation was detected by both instruments in January and March, resulting in an ozone loss of more than 1 ppmv in a layer below 23 km. In comparison to recent cold winters, this layer was found to be quite thin. Therefore the total loss measured in column amount of (1.2-1.4) x 10(22) molec/m(2) was smaller than the losses in previous cold winters.
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页数:12
相关论文
共 52 条
[1]  
Berg H., 1998, Proceedings of 2nd ESA Workshop on Millimetre Wave Technology and Applications: Antennas, Circuits and Systems (WPP-149), P372
[2]  
BERG H, 2000, 6515 FZK WISS BER
[3]  
BLUM U, 2000, SOLVE THESEO 2000 SC
[4]  
BRAATHEN GO, 1998, POLAR STRATOSPHERIC
[5]   Ozone depletion observed by the Airborne Submillimeter Radiometer (ASUR) during the Arctic winter 1999/2000 -: art. no. 8277 [J].
Bremer, H ;
von König, M ;
Kleinböhl, A ;
Küllmann, H ;
Künzi, K ;
Bramstedt, K ;
Burrows, JP ;
Eichmann, KU ;
Weber, M ;
Goede, APH .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2002, 107 (D20)
[6]   Increased stratospheric ozone depletion due to mountain-induced atmospheric waves [J].
Carslaw, KS ;
Wirth, M ;
Tsias, A ;
Luo, BP ;
Drnbrack, A ;
Leutbecher, M ;
Volkert, H ;
Renger, W ;
Bacmeister, JT ;
Reimer, E ;
Peter, T .
NATURE, 1998, 391 (6668) :675-678
[7]   AN ANALYTIC-EXPRESSION FOR THE COMPOSITION OF AQUEOUS HNO3-H2SO4 STRATOSPHERIC AEROSOLS INCLUDING GAS-PHASE REMOVAL OF HNO3 [J].
CARSLAW, KS ;
LUO, BP ;
PETER, T .
GEOPHYSICAL RESEARCH LETTERS, 1995, 22 (14) :1877-1880
[8]   On the use of HF as a reference for the comparison of stratospheric observations and models [J].
Chipperfield, MP ;
Burton, M ;
Bell, W ;
Paton-Walsh, C ;
Blumenstock, T ;
Coffey, MT ;
Hannigan, JW ;
Mankin, WG ;
Galle, B ;
Mellqvist, J ;
Mahieu, E ;
Zander, R ;
Notholt, J ;
Sen, B ;
Toon, GC .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1997, 102 (11D) :12901-12919
[9]   NITRIC-ACID CLOUD FORMATION IN THE COLD ANTARCTIC STRATOSPHERE - A MAJOR CAUSE FOR THE SPRINGTIME OZONE HOLE [J].
CRUTZEN, PJ ;
ARNOLD, F .
NATURE, 1986, 324 (6098) :651-655
[10]  
European Commission (DG XII), 1997, 16986 EUR EN