On the change in UO2 redox reactivity as a function of H2O2 exposure

Author:

Maier Annika Carolin12345ORCID,Kegler Philip6789ORCID,Klinkenberg Martina6789ORCID,Baena Angela6789ORCID,Finkeldei Sarah6789ORCID,Brandt Felix6789ORCID,Jonsson Mats12345ORCID

Affiliation:

1. Department of Chemistry

2. School of Engineering Sciences in Chemistry

3. Biotechnology and Health

4. KTH Royal Institute of Technology

5. 10044 Stockholm

6. Forschungszentrum Jülich GmbH

7. Institute of Energy and Climate Research – Nuclear Waste Management and Reactor Safety (IEK-6)

8. 52425 Jülich

9. Germany

Abstract

High H2O2 exposure leads to an irreversible change in redox reactivity of UO2 surfaces.

Funder

Svensk Kärnbränslehantering

H2020 Euratom

Publisher

Royal Society of Chemistry (RSC)

Subject

Inorganic Chemistry

Reference42 articles.

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2. Geological storage of high level nuclear waste

3. Long-term Behavior Science: The cornerstone approach for reliably assessing the long-term performance of nuclear waste

4. The long-term effect of hydrogen on the UO2 spent fuel stability under anoxic conditions: Findings from the Cigar Lake Natural Analogue study

5. Radiation induced dissolution of UO2 based nuclear fuel – A critical review of predictive modelling approaches

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