期刊论文详细信息
Frontiers in Materials
Novel photocatalytic coating for corrosion mitigation in 304LSS of dry storage canisters
Materials
Aswin kumar Anbalagan1  Tsung-Kuang Yeh2  Chih-Hao Lee2  Kamalasekaran Sathasivam3  Mei-Ya Wang4 
[1] Department of Engineering and System Science, National Tsing Hua University, Hsinchu, Taiwan;Department of Engineering and System Science, National Tsing Hua University, Hsinchu, Taiwan;Institute of Nuclear Engineering and Science, National Tsing Hua University, Hsinchu, Taiwan;Nanoscience and Technology Program, Taiwan International Graduate Program, Academia Sinica, Taipei, Taiwan;Department of Engineering and System Science, National Tsing Hua University, Hsinchu, Taiwan;Nuclear Science and Technology Development Center, National Tsing Hua University, Hsinchu, Taiwan;
关键词: dry storage canister;    304L stainless steel (304LSS);    titanium dioxide (TiO);    cerium doping;    photo-cathodic protection;   
DOI  :  10.3389/fmats.2023.1129886
 received in 2022-12-22, accepted in 2023-02-27,  发布年份 2023
来源: Frontiers
PDF
【 摘 要 】

Type 304L stainless steel (304LSS) is one of the candidate canister materials for storing radioactive spent fuels, usually near seashore environments along with nuclear power plants. During the prolonged exposure of dry storage canisters to saline environments, they are highly susceptible to chloride induced stress corrosion cracking. Failure of a dry storage canister not only would release radioactive isotopes into the environment, but would also lead to a costly replacement of the cracked canister. The objective of this study is to develop a multilayered titanium dioxide (TiO2) composite coating on a 304LSS substrate. With ultraviolet (UV) illumination, this coating would act as a barrier and simultaneously offer cathodic protection against corrosion in the substrate alloy. The composite coating consists of a plain amorphous TiO2 coating over another cerium-doped (Ce-doped) TiO2 coating. Electronic currents generated by photo-catalytic reaction of the amorphous TiO2 coating under UV illumination were measured. Photo-electrochemical analyses and surface morphology observations were conducted to evaluate the performance of the Ce-doped coatings on corrosion mitigation. Optimal amounts of cerium doping that offered better photo-cathodic protection were also explored. Results indicated that the Ce-doped TiO2 coating exhibited a better performance on photo-cathodic protection for 304L stainless steel in aerated 3.5% NaCl solutions than the one without cerium doping. The underlying Ce-doped TiO2 coating was effectively charged during UV illumination, and it was able to continuously release electrons even after the UV was switched off, thus providing uninterrupted photo-cathodic protection for the coated 304L stainless steel substrate.

【 授权许可】

Unknown   
Copyright © 2023 Sathasivam, Wang, Anbalagan, Lee and Yeh.

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RO202310101847744ZK.pdf 2208KB PDF download
FMOLB_fmolb-2023-1216192_wc_tfx5.tif 26KB Image download
fmats-10-1129886-fx1.tif 20KB Image download
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fmats-10-1129886-fx1.tif

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