EuCl3-mediated corrosion of Ni and Ni-20Cr model alloy in LiCl-KCl molten salt

Corrosion of structural materials is a key engineering challenge for the development of molten salt reactors (MSRs). Metal ion impurities in the salt, which are inevitable due to their natural evolution in a reactor (e.g., fission products and corrosion products) can significantly impact the corrosion performance of structural materials. In this work, we investigated the effects of one fission product, Eu in its 3+ oxidation state, on the corrosion behaviors of pure Ni metal and Ni-20Cr model alloy in molten LiCl-KCl eutectic using in situ optical spectroscopy, post-corrosion inductively coupled plasma mass spectrometry (ICP-MS), and electron microscopy-based techniques. The EuCl 3 -containing salt was found to be extremely corrosive to both Ni and Ni-20Cr. Detailed microstructural characterization revealed that pure Ni primarily exhibited planar corrosion fronts with occasional shallow intergranular attacks, while Ni-20Cr alloy showed severe localized intergranular attacks with selective Cr leaching and salt penetration near grain boundaries. Additionally, this study uncovered the unique intragranular crystallographic attack of Ni-20Cr following exposure to EuCl 3 -containing salt. Overall, these findings are crucial for understanding how oxidizing salt impurities such as EuCl 3 affect corrosion reactions and diffusion kinetics at the salt-material interface, thereby influencing corrosion microstructure evolution pathways.

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Publication Details

Journal
npj Materials Degradation
Published
2026-09-15
DOI
https://doi.org/10.1038/s41529-026-00874-w
Primary Topic
Molten salt chemistry and electrochemical processes
Type
article
Field-Weighted Citation Impact
0.00

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article

EuCl3-mediated corrosion of Ni and Ni-20Cr model alloy in LiCl-KCl molten salt

Yuxiang Peng, James F. Wishart, Ruchi Gakhar, W. S. Phillips et al.
npj Materials Degradation
Molten salt chemistry and electrochemical processes
article

EuCl3-mediated corrosion of Ni and Ni-20Cr model alloy in LiCl-KCl molten salt

Yuxiang Peng, James F. Wishart, Ruchi Gakhar, W. S. Phillips, Linu Malakkal, Mario MATOS, K. Thornton, Kaustubh Bawane, Yu-chen Karen Chen-Wiegart
article en

Abstract

Corrosion of structural materials is a key engineering challenge for the development of molten salt reactors (MSRs). Metal ion impurities in the salt, which are inevitable due to their natural evolution in a reactor (e.g., fission products and corrosion products) can significantly impact the corrosion performance of structural materials. In this work, we investigated the effects of one fission product, Eu in its 3+ oxidation state, on the corrosion behaviors of pure Ni metal and Ni-20Cr model alloy in molten LiCl-KCl eutectic using in situ optical spectroscopy, post-corrosion inductively coupled plasma mass spectrometry (ICP-MS), and electron microscopy-based techniques. The EuCl 3 -containing salt was found to be extremely corrosive to both Ni and Ni-20Cr. Detailed microstructural characterization revealed that pure Ni primarily exhibited planar corrosion fronts with occasional shallow intergranular attacks, while Ni-20Cr alloy showed severe localized intergranular attacks with selective Cr leaching and salt penetration near grain boundaries. Additionally, this study uncovered the unique intragranular crystallographic attack of Ni-20Cr following exposure to EuCl 3 -containing salt. Overall, these findings are crucial for understanding how oxidizing salt impurities such as EuCl 3 affect corrosion reactions and diffusion kinetics at the salt-material interface, thereby influencing corrosion microstructure evolution pathways.

npj Materials Degradation
Brookhaven National Laboratory (US), University of Michigan (US), Idaho National Laboratory (US), Stony Brook University (US)
Office of Nuclear Energy, Energy Frontier Research Centers
Openalex Percentile: Top 20%
Molten salt chemistry and electrochemical processes
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