Preliminary Assessment of Radiolysis for the Cooling Water System in the Rotating Target of SORGENTINA-RF

Author:

Sartorio CamilloORCID,Angiolini MassimoORCID,Flammini DavideORCID,Pietropaolo AntoninoORCID,Agostini Pietro,Alberghi CiroORCID,Candido LuigiORCID,Capogni Marco,Capone Mauro,Cataldo SebastianoORCID,Contessa Gian Marco,D’Arienzo Marco,Del Dotto Alessio,Diamanti Dario,Dongiovanni Danilo,Farini Mirko,Ferrari PaoloORCID,Fiore Angela,Fonnesu Nicola,Frisoni Manuela,Gadani Gianni,Gentili Angelo,Grasso Giacomo,Guardati Manuela,Guidoni David,Lamberti Marco,Lepore Luigi,Mancini Andrea,Mariani Andrea,Marinari RanieriORCID,Marzo Giuseppe A.,Mastroianni Bruno,Moro FabioORCID,Orefice Agostina,Orsetti Valerio,Pinna Tonio,Rizzo Antonietta,Rydzy Alexander,Salvi Stefano,Santoli Demis,Santucci AlessiaORCID,Saraceno Luca,Scaglione Salvatore,Sermenghi Valerio,Serra EmanueleORCID,Simonetti Andrea,Spassovsky Ivan Panov,Terranova NicholasORCID,Tosti Silvano,Ubaldini Alberto,Utili Marco,Zito Pietro,Zola Danilo,Voukelatou Konstantina,Zummo Giuseppe

Abstract

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. Beyond the main focus of medical radioisotope production, the source may represent a multi-purpose neutron facility by implementing a series of neutron-based techniques. Among the different engineering and technological issues to be addressed, the production of incondensable gases and corrosion product into the rotating target deserves a dedicated investigation. In this study, a preliminary analysis is carried out, considering the general layout of the target and the present choice of the target material.

Publisher

MDPI AG

Subject

General Environmental Science,Renewable Energy, Sustainability and the Environment,Ecology, Evolution, Behavior and Systematics

Reference21 articles.

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