首页> 外文期刊>Journal of Energy Storage >Corrosion evaluation of eutectic chloride molten salt for new generation of CSP plants. Part 2: Materials screening performance
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Corrosion evaluation of eutectic chloride molten salt for new generation of CSP plants. Part 2: Materials screening performance

机译:新一代CSP植物中共晶氯化盐的腐蚀评价。第2部分:材料筛选性能

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The operating temperature of a steam turbine is limited to 565 degrees C by the molten nitrate heat-transfer fluid; therefore, molten-salt CSP technologies require alternative salt chemistries such as chloride. The prevention of high-temperature corrosion on containment materials plays a critical role, and a corrosion mitigation plan is needed to achieve the target plant lifetime of 30 years. This paper performed a materials screening test, using a eutectic ternary chloride molten salt, composed by 20.4 wt. % KCl + 55.1 wt. % MgCl2 + 24.5 wt. % NaCl, in stainless steel (AISI 304) and two Ni base materials (Inconel 702 and Haynes 224). The corrosion mechanism and corrosion rates were obtained through electrochemical impedance spectroscopy (EIS). Ni base alloys showed a protective scale layer during 8 hours of immersion with a corrosion rate of 6.34 mm/year (In702) and 3.12 mm/ year (HR224). Monitoring corrosion results were confirmed by scanning electron microscopy (SEM) and X-ray diffraction (XRD), obtaining alumina and chromia protective layers.
机译:蒸汽涡轮机的工作温度通过熔融的硝酸盐传热流体限制为565℃;因此,熔盐CSP技术需要替代盐化学,如氯化物。预防遏制材料的高温腐蚀起到关键作用,需要腐蚀缓解计划,以实现30年的目标植物寿命。本文使用20.4重量%的共晶三元氯化盐进行了一种材料筛选试验。 %KCl + 55.1重量%。 %MgCl2 + 24.5重量%。 %NaCl,不锈钢(AISI 304)和两个Ni基础材料(Inconel 702和Haynes 224)。通过电化学阻抗光谱(EIS)获得腐蚀机理和腐蚀速率。 Ni碱基合金在8小时的浸泡期间显示保护鳞片层,腐蚀速率为6.34毫米/年(IN702)和3.12毫米/年(HR224)。通过扫描电子显微镜(SEM)和X射线衍射(XRD)来确认监测腐蚀结果,得到氧化铝和染色剂保护层。

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