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Towards a New MAX-DOAS Measurement Site in the Po Valley: Aerosol Optical Depth and NO2 Tropospheric VCDs
by
Wagner, Thomas
, Friedrich, Martina M.
, Valeri, Massimo
, Premuda, Margherita
, Fayt, Caroline
, Beirle, Steffen
, Achilli, Andrè
, Richter, Andreas
, Castelli, Elisa
, Bösch, Tim
, Hendrick, Francois
, Van Roozendael, Michel
, Pettinari, Paolo
, Papandrea, Enzo
in
Absorption spectroscopy
/ Aerosols
/ Air quality
/ Codes
/ earth observation
/ Extinction
/ Information retrieval
/ MAX-DOAS
/ MODIS
/ Nitrogen
/ Nitrogen dioxide
/ Observatories
/ Optical analysis
/ Optical thickness
/ Outdoor air quality
/ Po Valley
/ remote sensing
/ Software
/ Solar spectra
/ Spectrum analysis
/ Troposphere
2025
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Towards a New MAX-DOAS Measurement Site in the Po Valley: Aerosol Optical Depth and NO2 Tropospheric VCDs
by
Wagner, Thomas
, Friedrich, Martina M.
, Valeri, Massimo
, Premuda, Margherita
, Fayt, Caroline
, Beirle, Steffen
, Achilli, Andrè
, Richter, Andreas
, Castelli, Elisa
, Bösch, Tim
, Hendrick, Francois
, Van Roozendael, Michel
, Pettinari, Paolo
, Papandrea, Enzo
in
Absorption spectroscopy
/ Aerosols
/ Air quality
/ Codes
/ earth observation
/ Extinction
/ Information retrieval
/ MAX-DOAS
/ MODIS
/ Nitrogen
/ Nitrogen dioxide
/ Observatories
/ Optical analysis
/ Optical thickness
/ Outdoor air quality
/ Po Valley
/ remote sensing
/ Software
/ Solar spectra
/ Spectrum analysis
/ Troposphere
2025
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Towards a New MAX-DOAS Measurement Site in the Po Valley: Aerosol Optical Depth and NO2 Tropospheric VCDs
by
Wagner, Thomas
, Friedrich, Martina M.
, Valeri, Massimo
, Premuda, Margherita
, Fayt, Caroline
, Beirle, Steffen
, Achilli, Andrè
, Richter, Andreas
, Castelli, Elisa
, Bösch, Tim
, Hendrick, Francois
, Van Roozendael, Michel
, Pettinari, Paolo
, Papandrea, Enzo
in
Absorption spectroscopy
/ Aerosols
/ Air quality
/ Codes
/ earth observation
/ Extinction
/ Information retrieval
/ MAX-DOAS
/ MODIS
/ Nitrogen
/ Nitrogen dioxide
/ Observatories
/ Optical analysis
/ Optical thickness
/ Outdoor air quality
/ Po Valley
/ remote sensing
/ Software
/ Solar spectra
/ Spectrum analysis
/ Troposphere
2025
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Towards a New MAX-DOAS Measurement Site in the Po Valley: Aerosol Optical Depth and NO2 Tropospheric VCDs
Journal Article
Towards a New MAX-DOAS Measurement Site in the Po Valley: Aerosol Optical Depth and NO2 Tropospheric VCDs
2025
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Overview
Pollutants information can be retrieved from visible (VIS) and ultraviolet (UV) diffuse solar spectra exploiting Multi-AXis Differential Optical Absorption Spectroscopy (MAX-DOAS) instruments. In May 2021, the Italian research institute CNR-ISAC acquired and deployed a MAX-DOAS system SkySpec-2D. It is located in the “Giorgio Fea” observatory in San Pietro Capofiume (SPC), in the middle of the Po Valley, where it has constantly acquired zenith and off-axis diffuse solar spectra since the 1st October 2021. This work presents the retrieved tropospheric NO2 and aerosol extinction profiles (and their columns) derived from the MAX-DOAS measurements using the newly developed DEAP retrieval code. The code has been validated both using synthetic differential Slant Column Densities (dSCDs) from the Fiducial Reference Measurements for Ground-Based DOAS Air-Quality Observations (FRM4DOAS) project and real measured data. For this purpose, DEAP results are compared with the ones obtained with three state-of-the-art retrieval codes. In addition, an inter-comparison with satellite products from Sentinel-5P TROPOMI, for the tropospheric NO2 Vertical Column Densities (VCDs), and MODIS-MAIAC for the tropospheric Aerosol Optical Depth (AOD), is performed. We find a bias of −0.6 × 1015 molec/cm2 with a standard deviation of 1.8 × 1015 molec/cm2 with respect to Sentinel-5P TROPOMI for NO2 tropospheric VCDs and of 0.04 ± 0.08 for AOD with respect to MODIS-MAIAC data. The retrieved data show that the SPC measurement site is representative of the background pollution conditions of the Po Valley. For this reason, it is a good candidate for satellite validation and scientific studies over the Po Valley.
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