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Characterization of corrosion products formed on mild steel in deoxygenated water by Raman spectroscopy and energy dispersive X-ray spectrometry

机译:拉曼光谱和能量分散X射线光谱法在脱氧水中在低氧化水中形成的腐蚀产物的表征

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The corrosion of steel parts of heating systems is nowadays not commonly observed failure because of the lack of oxygen in circulated media. In rare cases corrosion rapidly initiates and propagates due to various, mostly unexplained mechanisms. A voluminous corrosion product that was found in the vicinity of a perforation to a pipe wall was investigated in order to understand the reasons for the observed rapid corrosion processes. Raman spectroscopy and energy dispersive X-ray microanalysis were used to examine this corrosion product across the whole cross-section of the pipe. It was observed that the inner part of the corrosion product at the contact with the pipe's inner surface mostly consisted of magnetite. The outer part of the corrosion product, which was in contact with the water in the pipe, was mostly goethite. These findings confirmed the hypothesis that the magnetite sediments on the surface of the new pipe caused oxygen concentration cell formation, which triggered corrosion dissolution of the pipe wall and led to a rapid perforation. (C) 2017 Published by Elsevier Ltd.
机译:如今,加热系统的钢部件的腐蚀是由于循环介质中缺乏氧气而常见的失败。在极少数情况下,腐蚀迅速引起并由于各种可能的机制而迅速启动并传播。研究了在对管壁的穿孔附近发现的一项大腐蚀产品,以了解观察到的快速腐蚀过程的原因。拉曼光谱和能量分散X射线微基分析用于在管道的整个横截面上检查该腐蚀产品。观察到,腐蚀产品的内部与管内表面接触的腐蚀产品主要由磁铁矿组成。腐蚀产品的外部部分,与管中的水接触,大多是可啮合的。这些发现证实了新管道表面上的磁铁矿沉积物引起氧浓缩细胞形成的假设,这引发了管壁的腐蚀溶解并导致了快速穿孔。 (c)2017年由elestvier有限公司出版

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