High temperature electrochemical reaction parameters affecting electrochemical corrosion potential of nickel-base Alloy 82 weld metal

Author:

Wada Yoichi1,Murotani Hikari1,Ishida Kazushige1,Sasaki Mayu2,Nagase Makoto2,Shimizu Ryosuke2,Okido Shinobu2

Affiliation:

1. Nuclear energy systems research department, Decarbonized Energy Innovation Center Hitachi Ltd, Hitachi, Japan

2. Nuclear plant engineering department, Hitachi Works Hitachi-GE Nuclear Energy Ltd, Hitachi, Japan

Publisher

Informa UK Limited

Reference24 articles.

1. Fejes PP. Deaeration practices in Swedish BWRs. Proc., Seminar on Countermeasures for Pipe Cracking in BWRs. Palo Alto, CA, USA: Electric Power Research Institute; 1980.

2. Law RJ, Indig ME, Lin CC. Suppression of radiolytic oxygen production in a BWR by feedwater hydrogen addition. Proc., 3rd BNES International Conference on Water Chemistry in Nuclear Reactor Systems; Bournemouth, (UK): BNES. 1983.

3. Hettiarachchi S, Law RJ, Miller WD, et al. First application of NobleChemTM to an operating BWR. Proc., JAIF International Conference on Water Chemistry in Nuclear Power Plants. Kashiwazaki, Niigata, Japan; JAIF; 1998.

4. Hettiarachchi S, Diaz TP, Varela JA, et al. NobleChemTM application during power operation for crack mitigation and dose rate reduction of BWRs. Proc., 13th International Conference on Environmental Degradation of Materials in Nuclear Power Systems. Whistler, BC, Canada: Canadian Nuclear Society; 2007.

5. Electrochemical Corrosion Potential Monitoring in BWRs;Wada Y;Power Plant Chem,2019

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