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Ditch Corrosion Generated in Flowing Boiler Feed Water

机译:在流动的锅炉饲料水中产生的沟渠腐蚀

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摘要

In order to elucidate the cause of extraordinary corrosion which often occurs on the inside wall surface of heat conduction tubes of boilers, corrosion tests were conducted using a jet-in-slit apparatus in various boiler feed water flowing under high pressure at elevated temperature. As a result, ditch corrosion was detected with a rate in excess of 1 mm/y under some combined conditions of material, environment and fluid flow. In this paper, the experimental results obtained to date are summarized with the aim of proposing a mechanism of ditch corrosion occurrence. That is, the influence of fluid flow conditions as well as environmental conditions such as dissolved oxygen content (DO), pH and the temperature of the feed water on the occurrence of ditch corrosion were investigated. The observation of corrosion damaged surfaces and the depth distribution of the damage revealed that the ditch corrosion occurs only under specific conditions where the corrosion products formed on the metal surface are not a single species but consist of two different types of oxides. The process by which these oxides are formed appear to be influenced by how the ferrous ions are solubilized and how the hydroxide ions are located on the metal surface. In order to verify this interpretation, corrosion tests were carried out on carbon steel to successfully reproduce the ditch corrosion at ambient temperature, thus validating the interpretation.
机译:为了阐明通常发生在锅炉的导热管内壁表面上的非凡腐蚀的原因,在高压下在高温下在高压下流动的各种锅炉进料水中的锁定装置进行腐蚀试验。结果,在一些材料,环境和流体流动的组合条件下,在多余1mm / y的速率下检测到沟渠腐蚀。在本文中,总结了迄今为止获得的实验结果,目的是提出沟渠腐蚀发生机制。也就是说,研究了流体流动条件以及环境条件如溶解氧含量(DO),pH和进料水的温度的影响。腐蚀损坏表面的观察和损伤的深度分布显示,沟渠腐蚀仅在特定条件下发生,其中在金属表面上形成的腐蚀产物不是单一物种而是由两种不同类型的氧化物组成。形成这些氧化物的过程似乎受到铁离子的溶解质的影响以及氢氧化物离子如何位于金属表面上的影响。为了验证这种解释,在碳钢上进行腐蚀试验,以在环境温度下成功再现沟渠腐蚀,从而验证解释。

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