The following graphs are plotted using raw and unscreened data and may not have final calibration applied.

Nephelometer TSI 3WL

Monte Cimone

Bologna

San Pietro C.

Aethalometer Magee AE33-7

Monte Cimone

Bologna

San Pietro C.

Aethalometer Magee AE31-7

Monte Cimone

Bologna

San Pietro C.

Black Carbon - MAAP - Thermo Scientific Model 5012

Monte Cimone

Bologna

San Pietro C.

Condensation Particle Counter - TSI CPC3010

Monte Cimone

Bologna

San Pietro C.

Portable Laser Aerosolspectrometer and Dust Monitor Grimm Model 1.108

Monte Cimone

Bologna

San Pietro C.

CAPS PMex Monitor 630nm - Aerodyne Research

Monte Cimone

Bologna

San Pietro C.

CAPS PMex Monitor 450nm - Aerodyne Research

Monte Cimone

Bologna

San Pietro C.

CIMEL AERONET - Sun Photometer - Optical Depth Meas.

Monte Cimone

Bologna

San Pietro C.- IMAA CNR

Scanning Mobility Particle Sizer Spectrometer

Monte Cimone

Bologna

San Pietro C.

ACSM - Aerodyne Aerosol Chemical Speciation Monitor

Monte Cimone

Bologna

San Pietro C.

532nm Photoacoustic Spectrometer

Monte Cimone

Bologna

San Pietro C.

LASER-INDUCED INCANDESCENCE

Monte Cimone

Bologna

San Pietro C.

NRT Observations

Image removed.

Some of the main parameters describing aerosol absorption coefficient (and ancillary data) observed during campaign are plotted here in Near Real Time,
site by site. Raw and unscreened data are represented and may not have final calibration applied.

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Air Quality

air quality

The WRF-CHIMERE modelling system has been implemented over the Emilia Romagna region for simulating atmospheric gases and aerosols formation, diffusion and removal processes on regional scale.

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Meteo

meteogrammi

A meteorological forecast over the whole national territory is performed using non-hydrostatic Numerical Weather Model "Moloch" developed by CNR-ISAC. Moloch forecast (horizontal resolution about 1,5 km) is computed daily in operational mode in CNR-SAC. Here some forecast products are presented.
 

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Backtrajectories

flexpart

Flexpart lagrangian simulations allow to characterize the source-receptor relation of atmospheric tracers in the framework of long range and mesoscale transport. For the ACTRIS campaign a 1000 back-trajectories cluster is released every 6 hours from a 3D box of 0.5°x0.5°x500m dimensions over each measurement sites, travelling back in time for 4 days

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