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Electrochemistry in Molten LiF-BeF_2 Salt for Fluoride Salt-Cooled High Temperature Reactor Applications

机译:LiF-BeF_2熔盐在氟化盐冷却高温反应器中的电化学应用

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A dynamic beryllium reference electrode has been developed for in situ electrochemistry studies of molten LiF-BeF_2 (66-34 mol%) (FLiBe) salt which is being considered as the primary coolant for the fluoride salt-cooled high temperature reactor (FHR). Measurement and control of the salt redox potential can mitigate corrosion which is an important challenge in high temperature molten fluoride salts. This three electrode probe has demonstrated good reproducibility in the measurement of the salt's redox potential with an error of ±4 mV at 500 °C. The response of the probe to changes in salt chemistry was investigated by the intentional additions of fluorides of nickel, iron, and chromium, which are corrosion products of common structural materials. The equilibrium potentials of these metal impurity fluorides were measured in solutions containing approximately 250 ppm of each impurity using cyclic voltammetry. This approach is being extended to study electrochemical purification of molten FLiBe.
机译:已经开发了动态铍参比电极,用于熔融LiF-BeF_2(66-34 mol%)(FLiBe)盐的原位电化学研究,该盐被认为是氟化物盐冷却的高温反应器(FHR)的主要冷却剂。盐氧化还原电位的测量和控制可以减轻腐蚀,这是高温熔融氟化物盐的一项重要挑战。这种三电极探针在盐的氧化还原电势测量中显示出良好的重现性,在500°C下的误差为±4 mV。通过有意添加镍,铁和铬的氟化物(这是常见的结构材料的腐蚀产物)来研究探头对盐化学变化的响应。使用循环伏安法在含有约250 ppm每种杂质的溶液中测量这些金属杂质氟化物的平衡电位。该方法正在扩展到研究熔融FLiBe的电化学纯化。

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