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THE EFFECT OF SALT COMPOSITION ON THE CHLORINE CORROSION OF LOW ALLOY STEELS

机译:盐组合物对低合金钢氯腐蚀的影响

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Material wastage of superheater tubes made of low alloy steels is greatly accelerated under normal operating conditions if alkali chlorides are stable in the deposits. The effect of salt composition on the corrosion behavior especially that of the alkali cation, Na or K was investigated using crucible tests in a thermobalance under a flowing N_2-O_2-CO_2-atmosphere, followed by SEM/EDS analyses and thermodynamic calculations. For both salts, rapid corrosion occurred due to the known mechanism of active oxidation. In the case of sodium chloride, a major part of the metal loss was caused by volatilization of metal chlorides even at temperatures as low as 480 deg C, while in the case of potassium chloride, enhanced oxide growth almost conclusively determined the corrosion rates. Further, no evidence of significant iron or potassium evaporation was found up to a temperature of 530 deg C. The different behavior of the steels when exposed to the two alkali chlorides has been explained by the difference in the thermodynamic stability of the corresponding alkali ferrites. However, the difference in the thermodynamic stability and volatility of the complex chlorides of these alkali metals and iron or various other transition metals present as alloying elements in these steels may also be important. Moreover, applying temperature cycles typical for superheater tubes in boilers enhanced the metal loss rate compared to isothermal exposures. Also, temperature cycling affects the corrosion scale morphology.
机译:如果碱氯化物在沉积物中稳定,则由低合金钢制成的过热器管的材料浪费在正常操作条件下大大加速。使用坩埚试验在流动的N_2-O_2-CO_2-气氛下的热迁移中,研究了盐组合物对腐蚀行为的影响,特别是在流动的N_2-O_2-CO_2-大气下进行坩埚试验,然后进行SEM / EDS分析和热力学计算。对于盐,由于已知的活性氧化机制,发生了快速腐蚀。在氯化钠的情况下,即使在低至480℃的温度下,金属氯化物挥发也引起了金属损失的主要部分,而在氯化钾的情况下,氧化钾生长几乎确定了腐蚀速率。此外,没有发现显着的铁或钾蒸发的证据,其温度为530℃。通过相应的碱金铁的热力学稳定性的差异,已经解释了当暴露于两种碱氯化物时钢的不同行为。然而,在这些碱金属和铁或各种其它过渡金属的复合氯化物的热力学稳定性和挥发性的差异表现为合金化在这些钢元件也可能是重要的。此外,与等温曝光相比,锅炉中过热器管典型的典型温度循环增强了金属损失率。此外,温度循环会影响腐蚀尺度的形态。

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