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Possible scenarios for the causes of accelerated fireside corrosion of superheater tubes in coal-fired boilers

机译:燃煤锅炉过热器管加速壁式腐蚀原因的可能情景

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摘要

Recent experience of rapid corrosion of superheater tubes in coal-fired boilers has led to the application of weld-overlay coatings, which have proved effective but are expensive and can degrade mechanical tube life. Lack of understanding of how such corrosion differs from the established mechanism involving low-melting, complex, alkali-iron trisulphates is a major obstacle to devising alternative protective measures. Suggested scenarios for such accelerated corrosion are considered, including (1) increased tube surface temperatures allowing other sulphate mixtures to melt, analogous to Hot Corrosion mechanisms in gas turbines; (2) changes in the corrosivity of tube deposits from carryover of reduced species; and (3) increased release of corrosive species from the coal under substoichiometric combustion conditions. The potential for such scenarios to change the corrosive environment is assessed on the basis of current mechanistic understanding, though the general lack of phase diagrams for relevant ternary and quaternary sulphate systems is a major drawback to specifying the processes involved.
机译:最近的燃煤锅炉过热器管快速腐蚀的经验导致焊接覆盖涂层的应用,这已经证明了有效但是昂贵的并且可以降低机械管寿命。缺乏了解这种腐蚀如何与涉及低熔点,复杂,碱铁三硫酸盐的既定机制有何不同,是设计替代保护措施的主要障碍。考虑了这种加速腐蚀的建议情景,包括(1)增加管表面温度,允许其他硫酸盐混合物熔化,类似于燃气轮机中的热腐蚀机制; (2)管沉积物腐蚀性从减少的物种的腐蚀性变化; (3)在替代燃烧条件下从煤中释放腐蚀性物种。根据当前的机械理解评估这种情景改变腐蚀环境的可能性,尽管相关三元和硫代硫酸盐系统的一般缺乏相图是指定所涉及的过程的主要缺点。

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