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Long-term Corrosion of Zircaloy-4 and Zircaloy-2 by Continuous Hydrogen Measurement under Repository Condition

机译:通过在储存库条件下连续氢气测量,锆铝-4和锆洛伊-2的长期腐蚀

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Corrosion behavior is a key issue for the waste disposal of irradiated metals, such as hulls and endpieces, and is considered to be a leaching source of radionuclides including C-14. However, little information about Zircaloy corrosion in anticorrosive conditions has been provided. In the present study, long-term corrosion tests of Zircaloy-4 and Zircaloy-2 were performed in assumed disposal conditions (dilute NaOH solution, pH 12.5, 303 K) by using the gas flow system for 1500 days. The corrosion rate, which was determined by measuring gaseous hydrogen and the hydrogen absorbed in Zircaloy, decreased with immersion time and was lower than the value of 2×10~(-2) μm/y used in performance assessment (1500-day values: 5.84×10~(-3) and 5.66×10~(-3) μm/y for Zircaloy-4, 1000-day values: 8.81 × 10~(-3) μm/y for Zircaloy-2). The difference in corrosion behavior between Zircaloy 4 and Zircaloy-2 was negligible. The average values of the hydrogen absorption ratios for Zircaloy-4 and Zircaloy-2 during corrosion were 91% and 94%, respectively. The hydrogen generation kinetics of both gas evolution and absorption into metal can be shown by a parabolic curve. This result indicates that the diffusion process controls the Zircaloy corrosion in the early corrosion stage of the present study, and that the thickness of the oxide film in this stage is limited to approximately 25 nm and may therefore be in the form of dense tetragonal zirconia.
机译:腐蚀行为是辐照金属的废物处理的关键问题,例如船体和终端,并且被认为是包含C-14的放射性核素的浸出源。但是,已经提供了有关渗透条件下的锆石腐蚀的少量信息。在本研究中,通过使用气流系统1500天,在假定的处理条件下进行锆瓦洛-4和锆铝-2的长期腐蚀试验,在假定的处理条件下(稀释NaOH溶液,pH 12.5,303k)。通过测量气态氢和在锆洛伊中吸收的氢而确定的腐蚀速率,随着浸入时间的浸渍时间降低,低于性能评估的2×10〜(-2)μm/ y(1500天: 5.84×10〜(-3)和5.66×10〜(-3)μm/ y用于锆石 - 4,1000天值:锆石英-2的8.81×10〜(-3)μm/ y)。锆瓦尔4和锆罗伊-2之间的腐蚀行为的差异可忽略不计。在腐蚀期间锆洛伊-4和锆洛伊-2的氢吸收比的平均值分别为91%和94%。气体进化和吸收到金属中的氢气产生动力学可以通过抛物线曲线表示。该结果表明扩散过程控制本研究早期腐蚀阶段的锆醛腐蚀,并且该阶段中氧化膜的厚度限制在约25nm,因此可以是致密四方氧化锆的形式。

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