atmospheric transport

Mandrioli, P., & Galán, C. (2018). Editorial. Aerobiologia. http://doi.org/10.1007/s10453-018-9544-4
Laussac, S., Piazzola, J., Tedeschi, G., Yohia, C., Canepa, E., Rizza, U., & Van Eijk, A. M. J. (2018). Development of a fetch dependent sea-spray source function using aerosol concentration measurements in the North-Western Mediterranean. Atmospheric Environment. http://doi.org/10.1016/j.atmosenv.2018.09.009
Salzano, R., Pasini, A., Ianniello, A., Mazzola, M., Traversi, R., & Udisti, R. (2018). High time-resolved radon progeny measurements in the Arctic region (Svalbard islands, Norway): Results and potentialities. Atmospheric Chemistry And Physics. http://doi.org/10.5194/acp-18-6959-2018
Tinarelli, G. L., & Castelli, T. (2019). Assessment of the Sensitivity to the Input Conditions with a Lagrangian Particle Dispersion Model in the UDINEE Project. Boundary-Layer Meteorology. http://doi.org/10.1007/s10546-018-0413-z
Chianese, E., Galletti, A., Giunta, G., Landi, T. C., Marcellino, L., Montella, R., & Riccio, A. (2018). Spatiotemporally resolved ambient particulate matter concentration by fusing observational data and ensemble chemical transport model simulations. Ecological Modelling. http://doi.org/10.1016/j.ecolmodel.2018.07.019
Hernández-Ceballos, M. A., Hanna, S., Bianconi, R., Bellasio, R., Mazzola, T., Chang, J., et al. (2019). UDINEE: Evaluation of Multiple Models with Data from the JU2003 Puff Releases in Oklahoma City. Part I: Comparison of Observed and Predicted Concentrations. Boundary-Layer Meteorology. http://doi.org/10.1007/s10546-019-00433-8
Vollmer, M. K., Young, D., Trudinger, C. M., Mühle, J., Henne, S., Rigby, M., et al. (2018). Atmospheric histories and emissions of chlorofluorocarbons CFC-13 (CClF3), £CFC-114 (C2Cl2F4), and CFC-115 (C2ClF5). Atmospheric Chemistry And Physics. http://doi.org/10.5194/acp-18-979-2018
Frey, W., Schofield, R., Hoor, P., Kunkel, D., Ravegnani, F., Ulanovsky, A., et al. (2015). The impact of overshooting deep convection on local transport and mixing in the tropical upper troposphere/lower stratosphere (UTLS). Atmospheric Chemistry And Physics. http://doi.org/10.5194/acp-15-6467-2015
Frey, W., Schofield, R., Hoor, P., Kunkel, D., Ravegnani, F., Ulanovsky, A., et al. (2015). The impact of overshooting deep convection on local transport and mixing in the tropical upper troposphere/lower stratosphere (UTLS). Atmospheric Chemistry And Physics. http://doi.org/10.5194/acp-15-6467-2015
Moroni, B., Castellini, S., Crocchianti, S., Piazzalunga, A., Fermo, P., Scardazza, F., & Cappelletti, D. (2015). Ground-based measurements of long-range transported aerosol at the rural regional background site of Monte Martano (Central Italy). Atmospheric Research. http://doi.org/10.1016/j.atmosres.2014.11.021