GSTDTAP  > 地球科学
DOI10.5194/acp-19-12811-2019
Impact of synthetic space-borne NO2 observations from the Sentinel-4 and Sentinel-5P missions on tropospheric NO2 analyses
Timmermans, Renske1; Segers, Arjo1; Curier, Lyana1,8; Abida, Rachid2; Attie, Jean-Luc2,3; El Amraoui, Laaziz2; Eskes, Henk4; de Haan, Johan4; Kujanpaa, Jukka5; Lahoz, William6; Nijhuis, Albert Oude4,9; Quesada-Ruiz, Samuel2; Ricaud, Philippe2; Veefkind, Pepijn4; Schaap, Martijin1,7
2019-10-14
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2019
卷号19期号:19页码:12811-12833
文章类型Article
语种英语
国家Netherlands; France; Finland; Norway; Germany
英文摘要

We present an Observing System Simulation Experiment (OSSE) dedicated to the evaluation of the added value of the Sentinel-4 and Sentinel-5P missions for tropospheric nitrogen dioxide (NO2). Sentinel-4 is a geostationary (GEO) mission covering the European continent, providing observations with high temporal resolution (hourly). Sentinel-5P is a low Earth orbit (LEO) mission providing daily observations with a global coverage. The OSSE experiment has been carefully designed, with separate models for the simulation of observations and for the assimilation experiments and with conservative estimates of the total observation uncertainties. In the experiment we simulate Sentinel-4 and Sentinel-5P tropospheric NO2 columns and surface ozone concentrations at 7 by 7 km resolution over Europe for two 3-month summer and winter periods. The synthetic observations are based on a nature run (NR) from a chemistry transport model (MOCAGE) and error estimates using instrument characteristics. We assimilate the simulated observations into a chemistry transport model (LOTOS-EUROS) independent of the NR to evaluate their impact on modelled NO2 tropospheric columns and surface concentrations. The results are compared to an operational system where only ground-based ozone observations are ingested. Both instruments have an added value to analysed NO2 columns and surface values, reflected in decreased biases and improved correlations. The Sentinel-4 NO2 observations with hourly temporal resolution benefit modelled NO2 analyses throughout the entire day where the daily Sentinel-5P NO2 observations have a slightly lower impact that lasts up to 3-6 h after overpass. The evaluated benefits may be even higher in reality as the applied error estimates were shown to be higher than actual errors in the now operational Sentinel-5P NO2 products. We show that an accurate representation of the NO2 profile is crucial for the benefit of the column observations on surface values. The results support the need for having a combination of GEO and LEO missions for NO2 analyses in view of the complementary benefits of hourly temporal resolution (GEO, Sentinel-4) and global coverage (LEO, Sentinel-5P).


领域地球科学
收录类别SCI-E
WOS记录号WOS:000490536500003
WOS关键词CHEMISTRY-TRANSPORT MODEL ; AIR-QUALITY ; DATA ASSIMILATION ; OBSERVING SYSTEM ; NITROGEN-OXIDES ; EMISSION TRENDS ; LOTOS-EUROS ; SIMULATION EXPERIMENTS ; SYNERGISTIC USE ; OZONE
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/187632
专题地球科学
作者单位1.TNO, Netherlands Org Appl Res, Climate Air & Sustainabil Div, NL-3508 TA Utrecht, Netherlands;
2.CNRS, Meteo France, CNRM GAME, UMR 3589, Toulouse, France;
3.Univ Toulouse, Lab Aerol, CNRS, UMR 5560, Toulouse, France;
4.Royal Netherlands Meteorol Inst KNMI, POB 201, NL-3730 AE Bilt, Netherlands;
5.FMI, POB 503, Helsinki 00101, Finland;
6.NILU Norwegian Inst Air Res, POB 100, N-2027 Kjeller, Norway;
7.Free Univ Berlin, Inst Meteorol, Carl Heinrich Becker Weg 6-10, D-12165 Berlin, Germany;
8.Cent Bur Stat, NL-6412 EX Heerlen, Netherlands;
9.SkyEcho, NL-3013 AK Rotterdam, Netherlands
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GB/T 7714
Timmermans, Renske,Segers, Arjo,Curier, Lyana,et al. Impact of synthetic space-borne NO2 observations from the Sentinel-4 and Sentinel-5P missions on tropospheric NO2 analyses[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2019,19(19):12811-12833.
APA Timmermans, Renske.,Segers, Arjo.,Curier, Lyana.,Abida, Rachid.,Attie, Jean-Luc.,...&Schaap, Martijin.(2019).Impact of synthetic space-borne NO2 observations from the Sentinel-4 and Sentinel-5P missions on tropospheric NO2 analyses.ATMOSPHERIC CHEMISTRY AND PHYSICS,19(19),12811-12833.
MLA Timmermans, Renske,et al."Impact of synthetic space-borne NO2 observations from the Sentinel-4 and Sentinel-5P missions on tropospheric NO2 analyses".ATMOSPHERIC CHEMISTRY AND PHYSICS 19.19(2019):12811-12833.
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