4.7 Article

The Boundary Layer Air Quality-Analysis Using Network of Instruments (BAQUNIN) Supersite for Atmospheric Research and Satellite Validation over Rome Area

Journal

BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY
Volume 103, Issue 2, Pages E599-E618

Publisher

AMER METEOROLOGICAL SOC
DOI: 10.1175/BAMS-D-21-0099.1

Keywords

Boundary layer; Air quality; In situ atmospheric observations; Profilers; atmospheric; Remote sensing; Surface observations

Funding

  1. ESA BAQUNIN Contract [4000126749/19/I-NS]
  2. NASA
  3. ESA

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The BAQUNIN supersite in Rome collects pollutant concentrations and meteorological data using passive and active ground-based instruments. It is one of the first observatories in the world to utilize multiple instruments in a highly polluted megacity. BAQUNIN serves as a research infrastructure for validating satellite atmospheric products and investigating the planetary and urban boundary layers.
The Boundary layer Air Quality-analysis Using Network of Instruments (BAQUNIN) supersite is presented. The site has been collecting pollutant concentrations and meteorological parameters since 2017. Currently, BAQUNIN consists of three observation sites located in the city center of Rome (Italy), and in the neighboring semirural and rural areas. To the best of our knowledge, BAQUNIN is one of the first observatories in the world to involve several passive and active ground-based instruments installed in multiple locations, managed by different research institutions, in a highly polluted megacity affected by coastal weather regimes. BAQUNIN has been promoted by the European Space Agency to establish an experimental research infrastructure for the validation of present and future satellite atmospheric products and the in-depth investigation of the planetary and urban boundary layers. Here, the main characteristics of the three sites are described, providing information about the complex instrumental suite and the produced data. The supersite adopts a policy of free sharing of its validated dataset with the community. Finally, the BAQUNIN potential is demonstrated with a case study involving a major fire that occurred in a waste treatment plant near the urban center of Rome, and the consequent investigation of the plume properties revealed by different instruments.

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