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High temperature corrosion in molten solar salt: The role of chloride impurities

机译:熔盐太阳盐的高温腐蚀:氯化物杂质的作用

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The role of chloride impurities in molten NaNO3-KNO3 (solar salt) mixture on corrosion behavior of low-chromium ferritic-martensitic X20CrMoV11-1 steel (X20) and stainless steel 316 (SS316) was studied at 600 degrees C. Gravimetric and metallographic methods were employed to characterize the kinetics of oxidation and the resulting corrosion products. Steel X20 showed non-protective character in both low- (up to 0.02 wt% Cl-) and high- (up to 0.25 wt% Cl-) chloride salts by forming a thick and non-compact oxide scale. A significant increase in weight gain was observed when X20 steel was immersed in the high-chloride-containing salt. Furthermore, the scale underwent severe deformation. SS316 showed superior corrosion resistance in both low- and high-chloride salts. Oxide scales formed on both steels included two zones: an outer Na-rich oxide and an inner mixed oxide based on Fe2O3 and Fe3O4 structures. The morphology and composition of these zones were significantly different on X20 and SS316 steels. A passive Cr-rich oxide layer at the metal/oxide interface was characterized as a protective layer. In the case of stainless steel 316 this layer showed even higher continuity when tested in the high-chloride salt resulting in better protection during the isothermal test.
机译:熔融纳米3-KNO3(太阳能盐)混合物对低铬铁素菌 - 马氏体X20CrMov11-1-钢(X20)和不锈钢316(SS316)的腐蚀行为的作用,在600℃下进行重量和金相方法用于表征氧化的动力学和所产生的腐蚀产物。钢X20通过形成厚度和非致密的氧化物尺度,在低(最多0.02wt%Cl-)中显示出非保护性,并且通过形成厚度和非致密的氧化物氧化物。当沿含高氯化物盐浸入X20钢时,观察到体重增加的显着增加。此外,规模经历了严重变形。 SS316在低氯化物盐中显示出优异的耐腐蚀性。在两个钢上形成的氧化物鳞片包括两个区域:基于Fe 2 O 3和Fe3O4结构的外部Na-富含氧化物和内混合氧化物。这些区域的形态和组成在X20和SS316钢上显着不同。金属/氧化物界面处的富含无源Cr的氧化物层的特征在于保护层。在不锈钢316的情况下,当在高氯化物盐中测试时,该层甚至在高氯化物盐中测试时更高的连续性导致等温测试期间的更好的保护。

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