Effects of Hydrogen Peroxide on Corrosion of Stainless Steel (VI) : Effects of Hydrogen Peroxide and Oxygen on Anodic Polarization Properties of Stainless Steel in High Temperature Pure Water
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概要
- 論文の詳細を見る
Anodic and cathodic polarization properties of stainless steel in high temperature pure water were measured to understand different responses of electrochemical corrosion potential (ECP) and frequency dependent complex impedance (FDCI) on H2O2 and O2. The findings are summarized as follows: 1) A Pt temporary reference electrode supported by an external Ag/AgCl reference electrode could be applied for stable measurement of polarization properties. 2) The cathodic current densities of the specimens exposed to H2O2 were determined by the H2O2 redox current, the anodic current densities were determined mainly by H2O2 oxidation current, and both were determined by [H2O2]. However, both anodic and cathodic current densities of the specimens exposed to O2 were not much influenced by [O2]. 3) ECP was saturated against [H2O2] and this resulted from the compensation of [H2O2] dependences of anodic and cathodic current densities. 4) Crack growth rate could be expressed as a function of modified ECP, which was designated as the potential on the anodic polarization curve of the specimens exposed to O2 with the same corrosion current density as the net corrosion current density of the specimens exposed to H2O2.
- 社団法人 日本原子力学会の論文
- 2007-05-25
著者
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UCHIDA Shunsuke
The Institute of Applied Energy
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Uchida S
Japan Atomic Energy Agency
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Uchida S
Tohoku Univ. Sendai
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Wada Y
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Wada Yoichi
Power And Industrial Systems R& D Division Hitachi Ltd.
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Wada Yoichi
Energy And Environmental Systems Lab. Hitachi Ltd.
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Wada Yoichi
Energy And Environmental Systems Laboratory Hitachi Ltd.
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Satoh Y
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Wada Yoichi
Power And Industrial Systems R&d Laboratory Hitachi Ltd.
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UCHIDA Shunsuke
Nuclear Power Engineering Corporation
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Satoh Yoshiyuki
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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MIYAZAWA Takahiro
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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MORISHIMA Yusuke
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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HIROSE Tatsuya
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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SATOH Yoshiyuki
Quantum Science and Energy Engineering Department, Graduate School of Engineering, Tohoku University
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SATOH Tomonori
Nuclear Science and Engineering Directorate, Japan Atomic Energy Agency
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Uchida Shunsuke
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Uchida Shunsuke
Power And Industrial Systems R&d Division Hitachi Ltd.
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Uchida Shunsuke
Energy Research Laboratory Hitachi Ltd.
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Murayama Yohei
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Hirose Tatsuya
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Satoh Tomonori
Nuclear Science And Engineering Directorate Japan Atomic Energy Agency
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Miyazawa Takahiro
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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Morishima Yusuke
Department Of Quantum Science And Energy Engineering Graduate School Of Engineering Tohoku Universit
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Wada Yoichi
Power & Industrial Systems R&d Laboratory Hitachi Ltd.
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Morishima Yusuke
Quantum Science And Energy Engineering Department Graduate School Of Engineering Tohoku University
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SATOH Tomonori
Nuclear Science and Energy Directorate, Japan Atomic Energy Agency
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