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使用响应面法研究硫化物和氯离子对316型奥氏体不锈钢在地下水条件下点蚀的影响。

Effect of Sulfide and Chloride Ions on Pitting Corrosion of Type 316 Austenitic Stainless Steel in Groundwater Conditions Using Response Surface Methodology.

作者信息

Yoo Jin-Seok, Chung Nguyen Thuy, Lee Yun-Ho, Kim Yong-Won, Kim Jung-Gu

机构信息

Department of Materials Science and Engineering, Sungkyunkwan University, 2066, Seobu-Ro, Jangan-Gu, Suwon-Si 16419, Republic of Korea.

出版信息

Materials (Basel). 2023 Dec 28;17(1):178. doi: 10.3390/ma17010178.

Abstract

This study investigates the corrosion resistance of Type 316 stainless steel as a candidate material for radioactive waste disposal canisters. The viability of stainless steel is examined under groundwater conditions with variations in pH, bisulfide ions (HS), and chloride ions (Cl) concentrations. Utilizing response surface methodology, correlations between corrosion factors and two crucial response variables, passive film breakdown potential and protection potential, are established. Cyclic potentiodynamic polarization tests and advanced analytical techniques provide detailed insights into the material's behavior. This research goes beyond, deriving an equation through response surface methodology that elucidates the relationship between the factors and breakdown potential. HS weakens the passive film and reduces the pitting corrosion resistance of the stainless steel. However, this study highlights the inhibitory effect of HS on pitting corrosion when Cl concentrations are below 0.001 M and at equivalent concentrations of HS. Under these conditions, immediate re-passivation occurs from the destroyed passive film to metal sulfides such as FeS, MoS, and MoS. As a result, no hysteresis loop occurs in the cyclic polarization curve in these conditions. This research contributes to the understanding of Type 316 stainless-steel corrosion behavior, offering implications for the disposal of radioactive waste in geological repositories.

摘要

本研究调查了316型不锈钢作为放射性废物处置罐候选材料的耐腐蚀性。在地下水条件下,研究了pH值、硫氢根离子(HS)和氯离子(Cl)浓度变化时不锈钢的适用性。利用响应面方法,建立了腐蚀因素与两个关键响应变量(钝化膜击穿电位和保护电位)之间的相关性。循环动电位极化试验和先进的分析技术提供了对材料行为的详细见解。本研究更进一步,通过响应面方法推导了一个方程,阐明了各因素与击穿电位之间的关系。HS会削弱钝化膜并降低不锈钢的点蚀抗性。然而,本研究强调,当Cl浓度低于0.001 M且HS浓度相当时,HS对点蚀有抑制作用。在这些条件下,从被破坏的钝化膜到金属硫化物(如FeS、MoS和MoS)会立即发生再钝化。因此,在这些条件下,循环极化曲线中不会出现滞后回线。本研究有助于理解316型不锈钢的腐蚀行为,为地质处置库中放射性废物的处置提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a78/10779458/09764457a985/materials-17-00178-g001.jpg

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