Items where Author is "Barresi, Antonello A."
Journal Article
Capozzi, Luigi C. and Barresi, Antonello A. and Pisano, Roberto (2019) Supporting data and methods for the multi-scale modelling of freeze-drying of microparticles in packed-beds. Data in Brief, 22. pp. 722-755. ISSN 2352-3409
Capozzi, Luigi C. and Barresi, Antonello A. and Pisano, Roberto (2019) A multi-scale computational framework for modeling the freeze-drying of microparticles in packed-beds. Powder Technology, 343. pp. 834-846. ISSN 0032-5910
Pisano, Roberto and Barresi, Antonello A. and Capozzi, Luigi C. and Novajra, Giorgia and Oddone, Irene and Vitale-Brovarone, Chiara (2017) Characterization of the mass transfer of lyophilized products based on X-ray micro-computed tomography images. Drying Technology, 35 (8). pp. 933-938. ISSN 0737-3937
Contribution to Conference
Capozzi, Luigi and Boccardo, Gianluca and Barresi, Antonello A. and Pisano, Roberto (2016) Computer-aided property estimation of micro-particles in packed-beds for freeze-drying applications. In: The 20th International Drying Symposium, 2016-08-07 - 2016-08-10.
Book/Report/Proceedings
Capozzi, Luigi and Barresi, Antonello A. and Montalbano, Giorgia and Vitale Brovarone, Chiara and Pisano, Roberto (2019) Computational methods based on X-ray microtomography for quantitative analysis of lyophilized products. UNSPECIFIED, Torino (Italy).
Capozzi, Luigi and Boccardo, Gianluca and Barresi, Antonello A. and Pisano, Roberto (2015) Coupled bullet physics and computational fluid dynamics as a tool for modeling the freeze-drying of microparticles. Szent István University, Gödöllő, Hungary.
Capozzi, Luigi and Barresi, Antonello A. and Novajra, Giorgia and Oddone, Irene and Vitale-Brovarone, Chiara (2015) Modeling and characterization of intra-vial heterogeneity of lyophilized products using X-ray computed tomography. UNSPECIFIED.
Capozzi, Luigi and Barresi, Antonello A. and Fissore, Davide and Pisano, Roberto and Oddone, Irene and Colucci, Domenico and Mussini, Paola and Demichela, Michela (2014) On the cutting edge of freeze-drying processes. UNSPECIFIED.