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Corrosion of carbon steel and the passivating properties of corrosion films formed under high-PT geothermal conditions

机译:高PT地热条件下碳钢的腐蚀及腐蚀膜的钝化性能

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Corrosion is a major obstacle to a safe implementation of geotechnical applications. Using a novel approach that includes vertical scanning interferometry (VSI) and electrochemical impedance spectroscopy (EIS) we discuss time-dependent carbon steel corrosion and film formation at geothermally relevant temperatures (80-160 degrees C) in CO2-saturated mildly acidic Na-Cl brine. Iron dissolution kinetics follows a logarithmic rate at 80 and 160 degrees C and a linear rate at 120 degrees C. At 80 degrees C, high initial corrosion rates (first 24 h) generate H-2 at a minimum rate of 12 mu mol h(-1) cm(-2) and lead to the formation of a continuous similar to 100 mu m thick porous corrosion film. It exhibits a duplex structure with a crystalline outer FeCO3 layer and an inner layer composed of a skeletal network of Fe3C impregnated with FeCO3. Being an electrical conductor we hypothesize the Fe3C to strongly enhance corrosion rates by providing additional cathodic sites. Pseudo-passivity due to an anodic film-forming reaction (presumably Fe-oxide) was observed at 120 and 160 degrees C, soon followed by the initiation of pitting at 120 degrees C. Steady-state corrosion rates at 160 degrees C are at least one order of magnitude lower than for 120 degrees C. Our experimental approach demonstrated potential for general applicability in studying corrosion-related phenomena. (C) 2019 Elsevier B.V. All rights reserved.
机译:腐蚀是安全实施岩土工程应用的主要障碍。我们使用一种新颖的方法,包括垂直扫描干涉法(VSI)和电化学阻抗谱(EIS),我们讨论了在地热相关温度(80-160摄氏度)下,在CO2饱和的弱酸性Na-Cl中,随时间变化的碳钢腐蚀和膜形成盐水。铁的溶解动力学遵循80和160摄氏度下的对数速率以及120摄氏度下的线性速率。在80摄氏度下,高的初始腐蚀速率(最初的24小时)以最小12μmol h的速率生成H-2( -1)cm(-2)并导致形成类似于100微米厚的连续多孔腐蚀膜。它具有双相结构,具有结晶的FeCO3外部层和内层,内层由浸渍有FeCO3的Fe3C骨架网络组成。作为一种电导体,我们假设Fe3C通过提供额外的阴极部位来大大提高腐蚀速率。在120和160摄氏度时观察到由于阳极成膜反应(可能是Fe-氧化物)引起的假钝化,随后很快在120摄氏度下开始出现点蚀。在160摄氏度下的稳态腐蚀速率至少为比120摄氏度低一个数量级。我们的实验方法证明了在研究与腐蚀有关的现象方面的普遍适用性。 (C)2019 Elsevier B.V.保留所有权利。

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