首页> 外文会议>Annual conference of the Canadian Nuclear Society;CNS/CNA student conference >Further Investigation on Flow-Accelerated Corrosion underTwo-Phase Flow Conditions: Effects of a Film-Forming Amine and Effects of Amine Degradation Products in the Presence of Ammonia and Ethanolamine
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Further Investigation on Flow-Accelerated Corrosion underTwo-Phase Flow Conditions: Effects of a Film-Forming Amine and Effects of Amine Degradation Products in the Presence of Ammonia and Ethanolamine

机译:在两相流动条件下加速流动腐蚀的进一步研究:在氨和乙醇胺存在下成膜胺的影响和胺降解产物的影响

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Experiments were carried out at simulated power plants conditions, specifically two-phase steam-water mixtures at 200°C with various steam voidages, to investigate influences of various amines on Flow-Accelerated Corrosion (FAC). A commercial film-forming amine, Cetamine ,added to feedwater showed no advantage over cyclohexylamine, its associated pH agent, at the same pH_(25°C) 9.2. Thennal breakdown products of ethanolamine are acetic and formic acid. Addition of acetic acid to a mixed ammonia-ethanolamine chemistry at pH_(25°C) 9.2 significantly increased FAC rate, whereas only a marginal effect was observed under similar conditions but with ammonia chemistry. Formic acid is lost because of its low thermal stability, therefore there was no aggravating effect on FAC under the test condition.
机译:实验是在模拟电厂条件下进行的,特别是在200°C下具有各种蒸汽空隙的两相蒸汽-水混合物,以研究各种胺对流动加速腐蚀(FAC)的影响。在相同的pH_(25°C)9.2时,添加到给水中的商用成膜胺,鲸蜡胺与环己胺(与其相关的pH剂)相比没有优势。乙醇胺的最终分解产物是乙酸和甲酸。在pH_(25°C)9.2下,将乙酸添加到氨-乙醇胺混合化学试剂中可显着提高FAC速率,而在相似条件下,但使用氨化学试剂,仅能观察到边际效应。甲酸由于其低的热稳定性而损失,因此在测试条件下对FAC没有加剧作用。

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