首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Electrochemical study on the corrosion behaviors of 316 SS in HITEC molten salt at different temperatures
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Electrochemical study on the corrosion behaviors of 316 SS in HITEC molten salt at different temperatures

机译:不同温度下316 SS腐蚀行为的电化学研究

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Corrosion of 316 SS in HITEC molten salt was investigated at 450?°C, 600?°C, and 680?°C by electrochemical methods including potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) measurements. Corrosion products were investigated by XRD and SEM equipped with EDS. Corrosion of 316 SS in HITEC molten salt exhibited active corrosion characteristics at these temperatures. 316 SS exhibited resistance to corrosion in HITEC molten salt at 450?°C, suffered severe corrosion at 680?°C, and demonstrated discontinuously increasing corrosion rate from 600?°C to 680?°C. A thin layer of Cr2O3and Fe-based oxides formed at 450?°C. At 600?°C and 680?°C three distinct oxide layers could be distinguished with a loose outer Fe-based oxide layer. After corrosion at 600?°C and 680?°C for 200?h, Na2O and K2O were detected in the HITEC molten salts, which caused the decomposition of the protective Cr2O3layer and enhanced corrosion of 316 SS. EIS results show that the corrosion processes of 316 SS in molten salt at 450?°C and 600?°C are controlled by outward diffusion of metal ions and oxygen vacancies, while corrosion mechanism at 680?°C change to was inward diffusion of oxygen ions. The change in corrosion mechanism became more prominent when corrosion time was prolonged to 197?h.
机译:通过电化学方法在450℃,600℃和680℃下研究了316秒,在450℃,600℃和680℃下进行腐蚀。包括电位极化和电化学阻抗光谱(EIS)测量。通过XRD和SEM调查腐蚀产品,配备EDS。 316 S中的Hitec熔盐腐蚀在这些温度下表现出积极的腐蚀特性。 316SS在450℃下表现出对Hitec熔盐的腐蚀性,在680℃下遭受严重的腐蚀,并将腐蚀速率从600°C的腐蚀速率表现出不连续。在450℃下形成的Cr2O3和Fe基氧化物的薄层。在600°C和680?℃下,可以用松散的外汇基氧化物层区分三个不同的氧化物层。在600℃和680℃下腐蚀200?H,在Hitec熔盐中检测到Na 2 O和K 2 O,这导致保护性Cr2O3晶层的分解和316 SS的增强腐蚀。 EIS结果表明,450°C和600°C的熔盐中316秒的腐蚀过程由金属离子和氧空位的外部扩散来控制,而腐蚀机制在680°C时变化为向内扩散氧气离子。当腐蚀时间延长到197时,腐蚀机制的变化变得更加突出。

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