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pro vyhledávání: '"E. Trifoni"'
Akademický článek
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Akademický článek
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Autor:
G. Marino, E. Trifoni, B. Larson, Triplicane A. Parthasarathy, Michael K. Cinibulk, Adolfo Martucci, Carmen M. Carney, Derek S. King, M. De Stefano Fumo, C. Purpura
Publikováno v:
Advances in Applied Ceramics. 117:s19-s25
The behaviour of a SiC-fibre-reinforced composite with a graded matrix was investigated in an arc jet facility. The graded matrix was comprised of several layers of silicon carbide that transition to a mixed SiC-HfB2 top layer and was sealed with an
Autor:
Adolfo Martucci, Russell Boyce, Rowan J. Gollan, J. Moran, E. Trifoni, A. Schettino, Bianca R. Capra, M. Brown, C. Purpura
Publikováno v:
Proceedings of the 32nd International Symposium on Shock Waves (ISSW32 2019).
Autor:
A. Fedele, R. Gardi, P. Vernillo, E. Trifoni, C. Purpura, A. Martucci, G. Ceglia, F. De Filippis, F. Punzo, R. Savino, S. Mungiguerra, P. Dell'Aversana, L. Gramiccia, L. Ferracina
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3730::1a905eed8acea1b218d7e8170add52df
http://hdl.handle.net/11588/790010
http://hdl.handle.net/11588/790010
Autor:
R. Ornelas, Marco Ferraro, Antonino S. Aricò, G. Dispenza, E. Trifoni, Vincenzo Antonucci, N. Briguglio, G. Brunaccini
Publikováno v:
ECS transactions 42 (2012): 95–100. doi:10.1149/1.4705484
info:cnr-pdr/source/autori:Briguglio, N.; M, Ferraro; Dispenza, G.; Brunaccini, G.; Ornelas, R.; Trifoni, E.; Antonucci, V.; Aricò, A. S./titolo:Development of a compact PEM electrolyzer system for applications with microdistributed renewable sources/doi:10.1149%2F1.4705484/rivista:ECS transactions/anno:2012/pagina_da:95/pagina_a:100/intervallo_pagine:95–100/volume:42
info:cnr-pdr/source/autori:Briguglio, N.; M, Ferraro; Dispenza, G.; Brunaccini, G.; Ornelas, R.; Trifoni, E.; Antonucci, V.; Aricò, A. S./titolo:Development of a compact PEM electrolyzer system for applications with microdistributed renewable sources/doi:10.1149%2F1.4705484/rivista:ECS transactions/anno:2012/pagina_da:95/pagina_a:100/intervallo_pagine:95–100/volume:42
In the framework of a private research program the development of a compact proton exchange membrane (PEM) electrolyzer system with a capacity of 300 Nl/h was developed. In this paper, the electrochemical properties of electrolyzer stack (10 cells of
Autor:
N. Briguglio, G. Brunaccini, Alessandro Stassi, R. Ornelas, Stefania Siracusano, Vincenzo Antonucci, Antonino S. Aricò, A. Di Blasi, Vincenzo Baglio, E. Trifoni
Publikováno v:
International Journal of Hydrogen Energy. 36:3333-3339
An optimization study of components and assembling characteristics for a proton exchange membrane (PEM) short stack electrolyzer (3 cells of 100 cm 2 geometrical area) was carried out. The electrochemical properties were investigated by polarization,
Autor:
R. Ornelas, N. Briguglio, Stefania Siracusano, Vincenzo Antonucci, E. Trifoni, Alessandro Stassi, Antonino S. Aricò, A. Di Blasi, Vincenzo Baglio
Publikováno v:
International journal of hydrogen energy 35 (2010): 5558–5568. doi:10.1016/j.ijhydene.2010.03.102
info:cnr-pdr/source/autori:Siracusano, S. ; Baglio, V. ; Di Blasi, A. ; Briguglio, N. ; Stassi, A. ; Ornelas, R. ; Trifoni, E. ; Antonucci, V. ; Aricò, A. S./titolo:Electrochemical characterization of single cell and short stack PEM electrolyzer based on a nanosized IrO2 anode electrocatalyst/doi:10.1016%2Fj.ijhydene.2010.03.102/rivista:International journal of hydrogen energy/anno:2010/pagina_da:5558/pagina_a:5568/intervallo_pagine:5558–5568/volume:35
info:cnr-pdr/source/autori:Siracusano, S. ; Baglio, V. ; Di Blasi, A. ; Briguglio, N. ; Stassi, A. ; Ornelas, R. ; Trifoni, E. ; Antonucci, V. ; Aricò, A. S./titolo:Electrochemical characterization of single cell and short stack PEM electrolyzer based on a nanosized IrO2 anode electrocatalyst/doi:10.1016%2Fj.ijhydene.2010.03.102/rivista:International journal of hydrogen energy/anno:2010/pagina_da:5558/pagina_a:5568/intervallo_pagine:5558–5568/volume:35
A nanosized IrO 2 anode electrocatalyst was prepared by a sulfite-complex route for application in a proton exchange membrane (PEM) water electrolyzer. The physico-chemical properties of the IrO 2 catalyst were studied by termogravimetry–differenti