Lower tropospheric ozone over the North China Plain: variability and trends revealed by IASI satellite observations for 2008-2016

被引:26
作者
Dufour, Gaelle [1 ,2 ]
Eremenko, Maxim [1 ,2 ]
Beekmann, Matthias [1 ,2 ]
Cuesta, Juan [1 ,2 ]
Foret, Gilles [1 ,2 ]
Fortems-Cheiney, Audrey [1 ,2 ]
Lachatre, Mathieu [1 ,2 ]
Lin, Weili [3 ]
Liu, Yi [4 ]
Xu, Xiaobin [5 ]
Zhang, Yuli [4 ]
机构
[1] Univ Paris Est Creteil, Lab Interuniv Syst Atmospher LISA, UMR7583, Creteil, France
[2] Univ Paris Diderot, CNRS, Creteil, France
[3] Minzu Univ China, Coll Life & Envirenmental Sci, Beijing, Peoples R China
[4] Chinese Acad Sci, Inst Atmospher Phys, Beijing, Peoples R China
[5] Chinese Acad Meteorol Sci, China Meteorol Adm, Key Lab Atmospher Chem, Beijing, Peoples R China
关键词
LONG-TERM TRENDS; WALIGUAN GAW STATION; NEAR-REAL-TIME; SURFACE OZONE; EAST-ASIA; ANTHROPOGENIC EMISSIONS; VALIDATION; POLLUTION; PRODUCTS; SPACE;
D O I
10.5194/acp-18-16439-2018
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
China is a highly polluted region, particularly the North China Plain (NCP). However, emission reductions have been occurring in China for about the last 10 years; these reduction measures have been in effect since 2006 for SO2 emissions and since 2010 for NOx emissions. Recent studies have shown a decrease in the NO2 tropospheric column since 2013 that has been attributed to the reduction in NO, emissions. Quantifying how these emission reductions translate regarding ozone concentrations remains unclear due to apparent inconsistencies between surface and satellite observations. In this study, we use the lower tropospheric (LT) columns (surface-6 km a.s.l.-above sea level) derived from the IASI-A satellite instrument to describe the variability and trend in LT ozone over the NCP for the 2008-2016 period. First, we investigate the IASI retrieval stability and robustness based on the influence of atmospheric conditions (thermal conditions and aerosol loading) and retrieval sensitivity changes. We compare IASI-A observations with the independent IASI-B instrument aboard the Metop-B satellite as well as comparing them with surface and ozonesonde measurements. The conclusion from this evaluation is that the LT ozone columns retrieved from IASI-A are reliable for deriving a trend representative of the lower/free troposphere (3-5 km). Deseasonalized monthly time series of LT ozone show two distinct periods: the first period (2008-2012) with no significant trend (< -0.1 % yr(-1)) and a second period (2013-2016) with a highly significant negative trend of -1.2% yr(-1), which leads to an overall significant trend of -0.77% yr(-1) for the 2008-2016 period. We explore the dynamical and chemical factors that could explain these negative trends using a multivariate linear regression model and chemistry transport model simulations to evaluate the sensitivity of ozone to the reduction in NOx emissions. The results show that the negative trend observed from IASI for the 2013-2016 period is almost equally attributed to large-scale dynamical processes and emissions reduction, with the large El Nino event in 2015-2016 and the reduction of NOx emissions being the main contributors. For the entire 2008-2016 period, large-scale dynamical processes explain more than half of the observed trend, with a possible reduction of the stratosphere-troposphere exchanges being the main contributor. Large-scale transport and advection, evaluated using CO as a proxy, only contributes to a small part of the trends (similar to 10%). However, a residual significant negative trend remains; this shows the limitation of linear regression models regarding their ability to account for nonlinear processes such as ozone chemistry and stresses the need for a detailed evaluation of changes in chemical regimes with the altitude.
引用
收藏
页码:16439 / 16459
页数:21
相关论文
共 70 条
[1]   Near-real time retrieval of tropospheric NO2 from OMI [J].
Boersma, K. F. ;
Eskes, H. J. ;
Veefkind, J. P. ;
Brinksma, E. J. ;
Van der A, R. J. ;
Sneep, M. ;
van den Oord, G. H. J. ;
Levelt, P. F. ;
Stammes, P. ;
Gleason, J. F. ;
Bucsela, E. J. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2007, 7 (08) :2103-2118
[2]   Validation of the IASI FORLI/EUMETSAT ozone products using satellite (GOME-2), ground-based (Brewer-Dobson, SAOZ, FTIR) and ozonesonde measurements [J].
Boynard, Anne ;
Hurtmans, Daniel ;
Garane, Katerina ;
Goutail, Florence ;
Hadji-Lazaro, Juliette ;
Koukouli, Maria Elissavet ;
Wespes, Catherine ;
Vigouroux, Corinne ;
Keppens, Arno ;
Pommereau, Jean-Pierre ;
Pazmino, Andrea ;
Balis, Dimitris ;
Loyola, Diego ;
Valks, Pieter ;
Sussmann, Ralf ;
Smale, Dan ;
Coheur, Pierre-Francois ;
Clerbaux, Cathy .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2018, 11 (09) :5125-5152
[3]   Seven years of IASI ozone retrievals from FORLI: validation with independent total column and vertical profile measurements [J].
Boynard, Anne ;
Hurtmans, Daniel ;
Koukouli, Mariliza E. ;
Goutail, Florence ;
Bureau, Jerome ;
Safieddine, Sarah ;
Lerot, Christophe ;
Hadji-Lazaro, Juliette ;
Wespes, Catherine ;
Pommereau, Jean-Pierre ;
Pazmino, Andrea ;
Zyrichidou, Irene ;
Balis, Dimitris ;
Barbe, Alain ;
Mikhailenko, Semen N. ;
Loyola, Diego ;
Valks, Pieter ;
Van Roozendael, Michel ;
Coheur, Pierre-Francois ;
Clerbaux, Cathy .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (09) :4327-4353
[4]  
[陈希 Chen Xi], 2015, [科学通报, Chinese Science Bulletin], V60, P2659
[5]   Monitoring of atmospheric composition using the thermal infrared IASI/MetOp sounder [J].
Clerbaux, C. ;
Boynard, A. ;
Clarisse, L. ;
George, M. ;
Hadji-Lazaro, J. ;
Herbin, H. ;
Hurtmans, D. ;
Pommier, M. ;
Razavi, A. ;
Turquety, S. ;
Wespes, C. ;
Coheur, P. -F. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2009, 9 (16) :6041-6054
[6]  
Cooper O. R., 2014, Elementa-Science of the Anthropocene, V2, P000029, DOI 10.12952/journal.elementa.000029
[7]   Transboundary ozone pollution across East Asia: daily evolution and photochemical production analysed by IASI+GOME2 multispectral satellite observations and models [J].
Cuesta, Juan ;
Kanaya, Yugo ;
Takigawa, Masayuki ;
Dufour, Gaelle ;
Eremenko, Maxim ;
Foret, Gilles ;
Miyazaki, Kazuyuki ;
Beekmann, Matthias .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2018, 18 (13) :9499-9525
[8]   Diurnal, seasonal and long-term variations of global formaldehyde columns inferred from combined OMI and GOME-2 observations [J].
De Smedt, I. ;
Stavrakou, T. ;
Hendrick, F. ;
Danckaert, T. ;
Vlemmix, T. ;
Pinardi, G. ;
Theys, N. ;
Lerot, C. ;
Gielen, C. ;
Vigouroux, C. ;
Hermans, C. ;
Fayt, C. ;
Veefkind, P. ;
Muller, J. -F. ;
Van Roozendael, M. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2015, 15 (21) :12519-12545
[9]   Algorithm theoretical baseline for formaldehyde retrievals from S5P TROPOMI and from the QA4ECV project [J].
De Smedt, Isabelle ;
Theys, Nicolas ;
Yu, Huan ;
Danckaert, Thomas ;
Lerot, Christophe ;
Compernolle, Steven ;
Van Roozendael, Michel ;
Richter, Andreas ;
Hilboll, Andreas ;
Peters, Enno ;
Pedergnana, Mattia ;
Loyola, Diego ;
Beirle, Steffen ;
Wagner, Thomas ;
Eskes, Henk ;
van Geffen, Jos ;
Boersma, Klaas Folkert ;
Veefkind, Pepijn .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2018, 11 (04) :2395-2426
[10]   Tropospheric ozone climatology over Beijing:: analysis of aircraft data from the MOZAIC program [J].
Ding, A. J. ;
Wang, T. ;
Thouret, V. ;
Cammas, J. -P. ;
Nedelec, P. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2008, 8 (01) :1-13