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Formation of Iron Sulfides on Carbon Steel in a Specific Cement Grout Designed for Radioactive Waste Repository and Associated Corrosion Mechanisms

机译:用于放射性废物储存库的特定水泥灌浆中碳钢硫化铁的形成及相关腐蚀机制

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摘要

Carbon steel coupons were buried in a specific low-pH cement grout designed for radioactive waste disposal and left 6 months in anoxic conditions at 80 °C. The corrosion product layers were analyzed by µ-Raman spectroscopy, XRD, and SEM. They proved to be mainly composed of iron sulfides, with magnetite as a minor phase, mixed with components of the grout. Average corrosion rates were estimated by weight loss measurements between 3 and 6 µm yr−1. Corrosion profiles revealed local degradations with a depth up to 10 µm. It is assumed that the heterogeneity of the corrosion product layer, mainly composed of conductive compounds (FeS, Fe3S4, and Fe3O4), promotes the persistence of corrosion cells that may lead to locally aggravated degradations of the metal. New cement grouts, characterized by a slightly higher pH and a lower sulfide concentration, should then be designed for the considered application.
机译:碳钢优惠券埋在特定的低pH水泥灌浆中,专为放射性废物处理,并在80°C的缺氧条件下留下6个月。通过μ-拉曼光谱,XRD和SEM分析腐蚀产物层。他们证明主要由硫化铁组成,用磁铁矿作为次阶段,与灌浆的组分混合。平均腐蚀速率估计3至6μmYR-1之间的体重减轻测量。腐蚀曲线显示局部降解,深度可达10μm。假设腐蚀产物层的异质性主要由导电化合物(FES,Fe3S4和Fe3O4)组成,促进了可能导致金属局部加重降解的腐蚀细胞的持久性。应为所考虑的应用设计新的水泥灌浆,其特征在于pH稍高,硫化物浓度较低。

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