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Effect of Hydrogen Chloride on Corrosion Behaviour of Fe-Cr Alloys in Wet CO2 Gas at 650 degrees C

机译:氯化氢对650℃的湿二氧化碳气体中Fe-Cr合金腐蚀行为的影响

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摘要

Chlorine-induced high-temperature corrosion is a major problem for structural materials used in incinerators because of the release of hydrochloride during waste combustion. In this work, the effect of HCl additions (0.05 and 0.1 vol%) to a N-2-10CO(2)-10H(2)O gas on the oxidation of binary ferritic Fe-(15, 20, 25 and 30 wt%) Cr alloys was investigated at 650 degrees C. The addition of HCl significantly increased the rate of weight gain during reaction. Thick multi-layered iron-rich oxide scales formed on Fe-15Cr in all gases. Increasing Cr content increased the tendency for Cr2O3 scale formation, leading to complete protection for Fe-25Cr in HCl-free gas, but a level of 30Cr was required in the presence of HCl. Mechanisms underlying the effect of chlorine on the critical Cr concentration required for protective chromia formation are explored.
机译:氯诱导的高温腐蚀是焚烧液中使用的结构材料的主要问题,因为在废燃烧过程中盐酸盐释放。 在这项工作中,HCl加入(0.05和0.1Vol%)对二元铁素体Fe-(15,20,25和30重量的氧化N-2-10co(2)-10h(2)o气体的影响 %)在650℃下研究Cr合金。在反应期间,加入HCl显着增加了重量增益速率。 在所有气体中,在Fe-15cr上形成厚的多层铁富含氧化物鳞片。 增加Cr含量增加了CR2O3刻度形成的趋势,导致HCl的气体中Fe-25cr的完全保护,但在HCl存在下需要30cc的水平。 探讨了氯对保护染色体形成所需的临界Cr浓度的机制。

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