Ruthenium behavior in the reactor cooling system in case of a PWR severe accident: study of oxidative conditions with stainless steel tube

Author:

Ohnet Marie-NoelleORCID,Leroy Olivia,Cantrel Laurent,Kärkelä Teemu

Funder

OECD STEM2 project

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Spectroscopy,Pollution,Radiology, Nuclear Medicine and imaging,Nuclear Energy and Engineering,Analytical Chemistry

Reference19 articles.

1. Miradji F, Cousin F, Souvi S, Vallet V, Denis J, Tanchoux V, Cantrel L (2015) Modelling of Ru behaviour in oxidative accident conditions and first source term assessments. In: The 7th European Review Meeting on Severe Accident Research (ERMSAR). 24–26 March 2015. Marseille, France

2. START Ruthenium tests are part of the OECD/NEA Source Term Evaluation and Mitigation (STEM) project. https://oecd-nea.org/jointproj/stem.html

3. Ohnet MN, Leroy O, Mamede AS (2018) Ruthenium behavior in the reactor cooling system in case of a PWR severe accident. J Radioanal Nucl Chem 316:161–177. https://doi.org/10.1007/s10967-018-5743-2

4. Mun C, Bosland L, Cantrel L, Colombani J, Leroy O, Ohnet MN, Albiol T (2015) OECD STEM Project and its Follow-up STEM2. In: International iodine workshop—full proceeding. May 2016 2015. Marseille (France)

5. Cotton FA, Wilkinson G (1980) Advanced inorganic chemistry—a comprehensive text, 4th ed. J.W. Sons, New York

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