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ガンマ線照射を模擬した湿度制御環境での腐食モニタリング

Corrosion monitoring in humidity-controlled environment simulating gamma ray irradiation

大森 惇志*; 秋山 英二*; 阿部 博志*; 端 邦樹; 佐藤 智徳; 加治 芳行; 井上 博之*; 田口 光正*; 清藤 一*; 多田 英司*; 鈴木 俊一*

Omori, Atsushi*; Akiyama, Eiji*; Abe, Hiroshi*; Hata, Kuniki; Sato, Tomonori; Kaji, Yoshiyuki; Inoue, Hiroyuki*; Taguchi, Mitsumasa*; Seito, Hajime*; Tada, Eiji*; Suzuki, Shunichi*

ガンマ線照射による水のラジオリシスで生成する酸化剤が炭素鋼の気相中の腐食に及ぼす効果を評価するために、オゾンをモデル酸化剤として用いて50$$^{circ}$$Cの湿度制御下に導入し、ACMセンサを用いた腐食モニタリングを行った。ACM電流はオゾンの濃度に伴って高くなったことから、オゾンによる腐食促進の効果が示された。これはオゾンの還元反応あるいは水への溶解反応が早く、カソード反応を促進したためと考えられる。

To evaluate the effect of oxidants, which are formed by radiolysis of water under gamma ray irradiation, on the corrosion of a carbon steel in humid environment, ozone was introduced as a model oxidant in to humidity-controlled air at 50$$^{circ}$$C in a thermo-hygrostat chamber. Corrosion monitoring was performed by using an Atmospheric Corrosion Monitor-type (ACM) sensor consisting of a carbon steel anode and an Ag cathode. The output current of the ACM sensor was increased with the increase in relative humidity and it was obviously increased with the increase in the introduced ozone concentration at each relative humidity. The results indicate that ozone accelerates the corrosion of the carbon steel. The effect of ozone on the corrosion acceleration is attributed to the fast reduction reaction and fast dissolution reaction in to water compared to that of oxygen.

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