Preliminary results concerning the VIEPI (Integrated Evaluation of Indoor Particulate Exposure) project are described. VIEPI project aimed at evaluating indoor air quality and exposure to particulate matter (PM) of humans within workplaces. Infiltration factors of PM in indoor environments of different sizes with different air ventilation regimes as well as their dependence on outdoor and indoor micrometeorology characteristics are some of the goals of the project. For these purposes, several indoor environments located on different sites of the Rome area were considered for the analysis. To evaluate the influence of the micrometeorological parameters on PM concentrations, four seasonal field campaigns were carried out simultaneously indoor and outdoor during short- and long-term study periods.

The integrated evaluation of indoor particulate exposure (VIEPI) project: Main goals and campaign description / Pelliccioni, Armando; Tofful, Luca; Catrambone, Maria; Marcovecchio, Francesca; Monti, Paolo; Leuzzi, Giovanni; Di Bernardino, Annalisa; Pini, Agnese; Cattani, Giorgio; Cusano, Mariacarmela; Di Menno di Bucchianico, Alessandro; Gaeta, Alessandra; Gaddi, Raffaela; Leone, Gianluca; De Santis, Antonella; Gherardi, Monica; Gordiani, Andrea; L’Episcopo, Nunziata; Ferrante, Riccardo; Boccuni, Fabio; Tombolini, Francesca; Conte, Carmela; D’Ovidio, Maria Concetta; Capone, Pasquale; Boccacci, Linda; Di Renzi, Simona; Cacciani, Marco; Canepari, Silvia; Perrino, Cinzia. - (2019). (Intervento presentato al convegno 19th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, Harmo 2019; Bruges; Belgium; 3 June through 6 June 2019 tenutosi a Bruges (Belgio)).

The integrated evaluation of indoor particulate exposure (VIEPI) project: Main goals and campaign description

Monti Paolo;Leuzzi Giovanni;Di Bernardino, Annalisa;Pini Agnese;Cacciani, Marco;Canepari, Silvia;
2019

Abstract

Preliminary results concerning the VIEPI (Integrated Evaluation of Indoor Particulate Exposure) project are described. VIEPI project aimed at evaluating indoor air quality and exposure to particulate matter (PM) of humans within workplaces. Infiltration factors of PM in indoor environments of different sizes with different air ventilation regimes as well as their dependence on outdoor and indoor micrometeorology characteristics are some of the goals of the project. For these purposes, several indoor environments located on different sites of the Rome area were considered for the analysis. To evaluate the influence of the micrometeorological parameters on PM concentrations, four seasonal field campaigns were carried out simultaneously indoor and outdoor during short- and long-term study periods.
2019
19th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, Harmo 2019; Bruges; Belgium; 3 June through 6 June 2019
aerobiological particles; exfiltration; indoor air quality; infiltration; PM; ultrafine particles
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
The integrated evaluation of indoor particulate exposure (VIEPI) project: Main goals and campaign description / Pelliccioni, Armando; Tofful, Luca; Catrambone, Maria; Marcovecchio, Francesca; Monti, Paolo; Leuzzi, Giovanni; Di Bernardino, Annalisa; Pini, Agnese; Cattani, Giorgio; Cusano, Mariacarmela; Di Menno di Bucchianico, Alessandro; Gaeta, Alessandra; Gaddi, Raffaela; Leone, Gianluca; De Santis, Antonella; Gherardi, Monica; Gordiani, Andrea; L’Episcopo, Nunziata; Ferrante, Riccardo; Boccuni, Fabio; Tombolini, Francesca; Conte, Carmela; D’Ovidio, Maria Concetta; Capone, Pasquale; Boccacci, Linda; Di Renzi, Simona; Cacciani, Marco; Canepari, Silvia; Perrino, Cinzia. - (2019). (Intervento presentato al convegno 19th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, Harmo 2019; Bruges; Belgium; 3 June through 6 June 2019 tenutosi a Bruges (Belgio)).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1360208
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