Article (Scientific journals)
Overview: The Network for the Detection of Atmospheric Composition Change at 35 years: achievements and future strategy
Petropavlovskikh, Irina; De Mazière, Martine; Thompson, Anne M. et al.
2026In Atmospheric Chemistry and Physics, 26 (12), p. 8637-8675
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Abstract :
[en] Abstract. Since 1991, continuous, consistently calibrated and openly archived ground-based measurements from the Network for the Detection of Atmospheric Composition Change (NDACC) have been collected to investigate processes responsible for decadal-scale changes, anomalies in atmospheric composition, and to validate satellite observations and model simulations. These measurements, from nearly 120 stations, support fundamental research in the area of stratospheric and tropospheric processes impacting ozone chemistry, greenhouse gases, atmospheric radiative forcing, air quality, and interactions with solar radiation and the entire Earth system. NDACC data are supplemented by observations from eleven global Cooperating Networks. The operational principles of Cooperating Networks are well aligned with NDACC objectives and protocols, focusing on data that (a) are high-quality, uniformly processed and traceable to reference standards; and (b) capture short-term (daily to interannual) anomalies and long-term trends. This paper summarizes the NDACC organizational structure. We also review the major accomplishments of NDACC since De Mazière et al. (2018), collaborative research with Cooperating Networks, and interactions with the satellite and modeling communities. Ground-based atmospheric composition monitoring is at a crossroads. Challenges include sustainability of human and financial resources required for complex and intensive data collection, technical issues including aging instrumentation, requirements for FAIR (findable, accessible, interoperable, reusable) data, and lack of data over large parts of Asia, Africa and South America. NDACC is well-positioned to adopt a three-pronged strategy going forward: protecting and modernizing existing stations; promoting the growing use of NDACC data; expanding the number of measured species and network coverage in under-sampled or under-reporting regions.
Research Center/Unit :
SPHERES - ULiège
Disciplines :
Earth sciences & physical geography
Author, co-author :
Petropavlovskikh, Irina 
De Mazière, Martine
Thompson, Anne M. 
Wild, Jeannette D.
Hannigan, James W. 
Selkirk, Henry B.
Hannun, Reem A. 
Steinbrecht, Wolfgang 
Lambert, Jean-Christopher 
Van Malderen, Roeland 
Asher, Elizabeth
Cordero, Raul R. 
Godin-Beekmann, Sophie 
Hubert, Daan 
Khaykin, Sergey 
Kreher, Karin
Leblanc, Thierry
Mahieu, Emmanuel  ;  Université de Liège - ULiège > Département d'astrophysique, géophysique et océanographie (AGO) > Groupe infra-rouge de physique atmosphérique et solaire (GIRPAS)
Maillard Barras, Eliane 
McConville, Glen
Nedoluha, Gerald
Ortega, Ivan 
Redondas Marrero, Alberto 
Seckmeyer, Gunther
Stauffer, Ryan M. 
Strode, Sarah A. 
Strong, Kim 
Sugita, Takafumi 
Van Roozendael, Michel
Velazco, Voltaire 
Vigouroux, Corinne
Vogel, Bärbel 
More authors (22 more) Less
Language :
English
Title :
Overview: The Network for the Detection of Atmospheric Composition Change at 35 years: achievements and future strategy
Publication date :
22 June 2026
Journal title :
Atmospheric Chemistry and Physics
ISSN :
1680-7316
eISSN :
1680-7324
Publisher :
Copernicus GmbH
Volume :
26
Issue :
12
Pages :
8637-8675
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
NOAA - National Oceanic and Atmospheric Administration
NASA - National Aeronautics and Space Administration
CIRES - Cooperative Institute for Research in Environmental Sciences
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