Optimization for the HP-CORD UV chemical decontamination process for AISI 304 stainless steel

Author:

Corrado Marino,Cao Silvio,Grassini Sabrina,Iannucci LeonardoORCID,Savoldi LauraORCID

Funder

Polytechnic of Turin

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference19 articles.

1. Chen L, Chamberlain DB, Conner C, Vandegrift GF. 1997. A Survey of Decontamination Processes Applicable to DOE Nuclear Facilities.

2. XPS fast depth profile of the native oxide layers on AISI 304, 316 and 430 commercial stainless steels and their evolution with time;Detriche;J. Electron. Spectros. Relat. Phenomena,2020

3. Assessment of radioactive contamination in primary circuit of WWER-440 type reactors by computer code OSCAR for the decommissioning case;Juodis;Progr. Nucl. Energy,2019

4. Kass JN, Wang MT, Clarke WL, Odegaard TK, Walker WL, Gordon BM. 1984. Corrosion implications for chemical decontamination and preservice treatment for BWRs. ANS Executive Conference on Decontamination of Power Reactors, Springfield, Mass.

5. Radiation effects on the dissolution kinetics of magnetite and hematite in EDTA- and NTA-based dilute chemical decontamination formulations;Keny;Radiat. Phys. Chem.,2005

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