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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effects of temperature and pH on the electrochemical behaviour of alloy 600 in simulated pressurized water reactor primary water
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Effects of temperature and pH on the electrochemical behaviour of alloy 600 in simulated pressurized water reactor primary water

机译:温度和pH对模拟加压水反应器初级水中合金600电化学行为的影响

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The effects of temperature and pH on the electrochemical properties of Alloy 600 were studied in oxygenated borate buffer solutions by the measurements of open circuit potential (OCP), anodic potentiostatic polarization, Mott-Schottky analysis (MSA), and electrochemical impedance spectroscopy (EIS). At each temperature and pH, the stabilized anodic passive current density was independent of the formation potential, and the slope of the M - S plot for the passive film formed at +0.3 Vocp (OCP + 0.3 V) is positive, indicating that the passive films formed on Alloy 600 have n-type semiconductor character. With increasing temperature (in each solution), the OCP and the impedance modulus decreased, while the passive current density and the defect density calculated from MSA increased, indicating a significant reduction in corrosion resistance. With the increase in pH value, the passive current density decreased, the absolute value of impedance increased slightly, revealing a slight increase in corrosion resistance. According to the optimization of Mixed Potential Model (MPM) on the experimentally measured EIS data for Alloy 600 at OCP and +0.3 Vocp, a series of fundamental parameters related to the micro-characteristic of passive film were extracted. In the barrier layer of the passive film, the concentration of cation interstitials is much higher than that of anion vacancies, indicating that the former was a dominant defect. With increasing temperature, the linear increase in the defect density and film thickness resulted in a linear increase of the anodic current density. However, with increasing pH, the decrease of defect density and the slight increase of film thickness caused a linear reduction in anodic current density. Elevated temperature has a more significant deterioration effect on the corrosion resistance of Alloy 600 than the increased pH value. Additionally, all the kinetics parameters describing the generation of cation interstitials and oxygen vacancies at the substrate/film were obtained. (C) 2019 Elsevier B.V. All rights reserved.
机译:温度和pH对合金600的电化学性质的影响在含氧硼酸盐缓冲溶液由开路电位的测量(OCP),阳极电位极化,莫特肖特基分析(MSA),和电化学阻抗谱(EIS)进行了研究。在每个温度和pH,稳定化的阳极钝化电流密度是独立形成的潜力,并且M的斜率 - S曲线图在0.3 VOCP(OCP + 0.3 V)形成的钝化膜是正的,这表明被动形成于合金600薄膜具有n型半导体特性。随着温度的升高(在每种溶液),在OCP和阻抗模量降低,而无源电流密度和从MSA计算出的缺陷密度增加,表明耐腐蚀性显著降低。随着pH值的增加,钝化电流密度下降,阻抗的绝对值略有增加,揭示在耐腐蚀性略有增加。根据混合电位模型(MPM)的上在OCP和0.3 VOCP实验测得的EIS数据合金600的优化,一系列相关的钝化膜的微特性基本参数的提取。在钝化膜的阻挡层,阳离子插页的浓度比阴离子空位的高得多,这表明前者是一个主要缺陷。随着温度的升高,在缺陷密度和膜厚度线性增加导致阳极电流密度的线性增加。然而,随着pH增加,缺陷密度的降低和薄膜厚度的轻微增加导致在阳极电流密度的线性下降。升高的温度下对合金600的耐腐蚀性比增加的pH值更恶化显著效果。此外,获得了所有描述在衬底/膜阳离子和插页氧空位的生成动力学参数。 (c)2019 Elsevier B.v.保留所有权利。

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