Zobrazeno 1 - 10
of 54
pro vyhledávání: '"Pietro Agostini"'
Autor:
Alessandra Vannoni, Pietro Arena, Bruno Gonfiotti, Marica Eboli, Pierdomenico Lorusso, Amelia Tincani, Nicolò Badodi, Antonio Cammi, Fabio Giannetti, Cristiano Ciurluini, Nicola Forgione, Francesco Galleni, Ilenia Catanzaro, Eugenio Vallone, Pietro Alessandro Di Maio, Pietro Agostini, Alessandro Del Nevo
Publikováno v:
Energies, Vol 16, Iss 23, p 7746 (2023)
The WCLL Breeding Blanket of DEMO and the Test Blanket Module (TBM) of ITER require accurate R&D activities, i.e., concept validation at a relevant scale and safety demonstrations. In view of this, the strategic objective of the Water Loop (WL) facil
Externí odkaz:
https://doaj.org/article/4b0150ccb9064b45abfec143b05ba80b
Autor:
Alessandra Vannoni, Pierdomenico Lorusso, Pietro Arena, Marica Eboli, Ranieri Marinari, Amelia Tincani, Cristiano Ciurluini, Fabio Giannetti, Nicolò Badodi, Claudio Tripodo, Antonio Cammi, Luciana Barucca, Andrea Tarallo, Pietro Agostini, Alessandro Del Nevo
Publikováno v:
Energies, Vol 16, Iss 23, p 7811 (2023)
Within the EUROfusion roadmap for the technological development of the European-DEMOnstration (EU-DEMO) reactor, a key point has been identified in the discontinuous operation (pulse-dwell-pulse) of the machine. Water Cooled Lithium Lead (WCLL) Breed
Externí odkaz:
https://doaj.org/article/772617c1a7cc42c29d5a920cd5965af3
Autor:
Flavio Cicconi, Alberto Ubaldini, Angela Fiore, Antonietta Rizzo, Sebastiano Cataldo, Pietro Agostini, Antonino Pietropaolo, Stefano Salvi, Vincenzo Cuzzola, on behalf of the SRF Collaboration
Publikováno v:
Molecules, Vol 28, Iss 5, p 2090 (2023)
99mTc-based radiopharmaceuticals are the most commonly used medical radioactive tracers in nuclear medicine for diagnostic imaging. Due to the expected global shortage of 99Mo, the parent radionuclide from which 99mTc is produced, new production meth
Externí odkaz:
https://doaj.org/article/452a4959c1324604ba031b3ff15e472c
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
K zobrazení výsledku je třeba se přihlásit.
K zobrazení výsledku je třeba se přihlásit.
Autor:
Xia Li, Pietro Agostini, Songlin Liu, Alessandro DelNevo, Mingzhun Lei, Min Li, Xuebin Ma, Kai Huang, Kecheng Jiang
Publikováno v:
Fusion Engineering and Design. 146:1716-1720
The water-cooled ceramic breeder (WCCB) blanket is one candidate for the Chinese Fusion Engineering Testing Reactor (CFETR), and it is being developed at the Institute of Plasma Physics of the Chinese Academy of Sciences. This paper presents an updat
Autor:
Camillo Sartorio, Massimo Angiolini, Davide Flammini, Antonino Pietropaolo, Pietro Agostini, Ciro Alberghi, Luigi Candido, Marco Capogni, Mauro Capone, Sebastiano Cataldo, Gian Marco Contessa, Marco D’Arienzo, Alessio Del Dotto, Dario Diamanti, Danilo Dongiovanni, Mirko Farini, Paolo Ferrari, Angela Fiore, Nicola Fonnesu, Manuela Frisoni, Gianni Gadani, Angelo Gentili, Giacomo Grasso, Manuela Guardati, David Guidoni, Marco Lamberti, Luigi Lepore, Andrea Mancini, Andrea Mariani, Ranieri Marinari, Giuseppe A. Marzo, Bruno Mastroianni, Fabio Moro, Agostina Orefice, Valerio Orsetti, Tonio Pinna, Antonietta Rizzo, Alexander Rydzy, Stefano Salvi, Demis Santoli, Alessia Santucci, Luca Saraceno, Salvatore Scaglione, Valerio Sermenghi, Emanuele Serra, Andrea Simonetti, Ivan Panov Spassovsky, Nicholas Terranova, Silvano Tosti, Alberto Ubaldini, Marco Utili, Pietro Zito, Danilo Zola, Konstantina Voukelatou, Giuseppe Zummo
Publikováno v:
Environments; Volume 9; Issue 8; Pages: 106
The SORGENTINA-RF project aims at developing a 14 MeV fusion neutron source featuring an emission rate in the order of 5–7 × 1013 s−1. The plant relies on a metallic water-cooled rotating target and a deuterium (50%) and tritium (50%) ion beam.
Autor:
Pietro Agostini, Lorenzo Malerba, Christian Grisolia, Pierre-François Giroux, Fabienne Delage, Karine Liger, Annelise Gallais-During, Marjorie Bertolus
Publikováno v:
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies, Vol 6, p 32 (2020)
EPJ N-Nuclear Sciences & Technologies
EPJ N-Nuclear Sciences & Technologies, EDP Sciences, 2020, 6, pp.32. ⟨10.1051/epjn/2019021⟩
EPJ N-Nuclear Sciences & Technologies, 2020, 6, pp.32. ⟨10.1051/epjn/2019021⟩
EPJ Nuclear Sciences & Technologies, Vol 6, p 32 (2020)
EPJ N-Nuclear Sciences & Technologies
EPJ N-Nuclear Sciences & Technologies, EDP Sciences, 2020, 6, pp.32. ⟨10.1051/epjn/2019021⟩
EPJ N-Nuclear Sciences & Technologies, 2020, 6, pp.32. ⟨10.1051/epjn/2019021⟩
This paper describes six projects, most of which are part of the research portfolio of the EERA JPNM, devoted to qualification, modelling and development of structural and fuel materials for advanced and innovative nuclear systems, with also two exam
Publikováno v:
EPJ N-Nuclear Sciences & Technologies
EPJ N-Nuclear Sciences & Technologies, 2022, 8, pp.36. ⟨10.1051/epjn/2022042⟩
EPJ N-Nuclear Sciences & Technologies, 2022, 8, pp.36. ⟨10.1051/epjn/2022042⟩
The goal of the ORIENT-NM action is to produce a single European strategic vision on research and innovation concerning nuclear materials in the EU, serving all reactor generations and nuclear systems. The key in this endeavour is to focus on advance
Autor:
Andrea Tarallo, Pietro Agostini, A. Del Nevo, Marco Utili, G. Mariano, Emanuela Martelli, Rocco Mozzillo, Rosaria Villari, Fabio Moro, G. Di Gironimo, Fabio Giannetti, Gianfranco Caruso, P. Arena, G. Bongiovì, R. Giammusso, Mariano Tarantino, P.A. Di Maio, Alessandro Tassone, D. Rozzia, Marica Eboli, A. Giovinazzi
Publikováno v:
Fusion Engineering and Design
Water-cooled lithium-lead breeding blanket is considered a candidate option for European DEMO nuclear fusion reactor. ENEA and the linked third parties have proposed and are developing a multi-module blanket segment concept based on DEMO 2015 specifi
Publikováno v:
Fusion Engineering and Design
The Breeding Blanket (BB) First Wall (FW) is the first boundary separating the fusion plasma and its energetic particles from the rest of a Tokamak. The heat load specifications at different poloidal positions are reviewed according to the maximum he