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Latest advances in the understanding of acid dewpoint corrosion: corrosion and stress corrosion cracking in combustion gas condensates

机译:了解酸露点腐蚀的最新进展:燃烧气体冷凝物中的腐蚀和应力腐蚀开裂

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摘要

Corrosion failures due to condensing flue gases containing H{sub}2O, SO{sub}3, NO{sub}X and HCI still occur more often than might be expected. The corrosion failures can be of several types: general corrosion, pitting attack and stress corrosion cracking (SCC). The chemistry of condensing gases is discussed, and some examples of corrosion in large-scale installations are presented, including blast stoves for steel production, heat recovery steam generators, and waste incineration boilers. The use of thermal insulation inside boiler casings can result in nitrate SCC when the flue gas contains high concentrations of NO{sub}X. Nitric acid from flue gas can react with carbon steel and insulation material forming ammonium nitrate and calcium nitrate. Both materials have hygroscopic properties and are very corrosive, even above the water dewpoint of the gases.
机译:由于含有H {sub} 2O,SO {sub} 3,NO {sub} X和HCl的冷凝烟气而导致的腐蚀失效仍然比预期的发生得更多。腐蚀失效可以有几种类型:普通腐蚀,点蚀和应力腐蚀开裂(SCC)。讨论了冷凝气体的化学性质,并列举了一些大型装置的腐蚀实例,包括用于钢铁生产的高炉,热回收蒸汽发生器和垃圾焚烧锅炉。当烟道气中含有高浓度的NO {sub} X时,在锅炉机壳内部使用隔热材料会导致硝酸盐SCC。烟道气中的硝酸可与碳钢和保温材料发生反应,形成硝酸铵和硝酸钙。两种材料都具有吸湿性,并且即使在气体的水露点以上,也具有很高的腐蚀性。

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