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Effect of high temperature corrosion on austeniticudstainless steel grade 304 in CO2 gas at 700ºC

机译:高温腐蚀对奥氏体 ud的影响在700ºC的CO2气体中使用304级不锈钢

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摘要

Austenitic stainless steels of grade 304 were exposed to dry (Ar-75%CO2) and wet (Ar-75%CO2-12%H2O) environments at 700oC. This experimental setup involved horizontal tube furnace connected to CO2 gas and water vapour facilities. X-ray diffraction (XRD) technique, variable pressure-scanning electron microscope (VP-SEM) and optical microscope techniques were used to characterize the products of corrosion. The results of XRD showed that the phase of oxide layers consists of Cr2O3 and NiCr2O4 in dry CO2, meanwhile Fe2O3, Cr2O3, Fe0.56Ni0.34, Fe3O4 were identified in wet condition after 50 h. Adding 12%H2O in Ar-75%CO2 leads significantly in weight change occurred at 10 h exposure. However, after 20 h, the weight gain was decreased due to spallation of the oxide scale. The addition of water vapour accelerates the oxidation rate on the steel than that in dry condition. Morphologies and growth kinetics of these oxides vary with reaction condition. The oxidation behaviour at different times of exposure and the effect of water vapour were discussed in correlation with the microstructure of the oxides.
机译:304级奥氏体不锈钢在700oC下暴露于干燥(Ar-75%CO2)和潮湿(Ar-75%CO2-12%H2O)环境中。该实验装置包括连接到CO2气体和水蒸气设施的水平管式炉。利用X射线衍射(XRD)技术,可变压力扫描电子显微镜(VP-SEM)和光学显微镜技术对腐蚀产物进行表征。 X射线衍射(XRD)结果表明,在干燥的CO2中,氧化物层由Cr2O3和NiCr2O4组成,同时在50 h后湿润时鉴定出Fe2O3,Cr2O3,Fe0.56Ni0.34,Fe3O4。在Ar-75%CO2中添加12%H2O会导致暴露10 h时重量发生明显变化。但是,在20小时后,由于氧化皮剥落,重量增加减少。与在干燥条件下相比,添加水蒸气可加速钢的氧化速度。这些氧化物的形态和生长动力学随反应条件而变化。讨论了在不同暴露时间的氧化行为以及水蒸气的影响,并与氧化物的微观结构相关联。

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