用氧化锆基传感器测量静态和流动液态铅铋中的氧浓度

P. Adhi, Dianta Mustofa Kamal, M. Muslimin, Andrei Vilcu, M. Kondo, Minoru Takahashi
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引用次数: 1

摘要

液态铅铋共晶(LBE)被提出作为第四代核反应堆的冷却剂之一。然而,应充分控制氧气以抑制LBE的腐蚀速率。以氧化锆为固体电解质制成氧传感器,用于在线监测氧浓度,实现对氧浓度的控制。该传感器的原理基于电化学方法,参比电极(RE)和工作电极(液态LBE)之间的氧活度差异可以产生电位差。电位差可用静电计测量,并可根据能斯特方程转化为氧浓度。本研究采用铁(Fe)/磁铁矿(Fe3O4)作为稀土材料。氧浓度的测量在450 - 600°C的静态条件下进行,在390°C左右的动态条件下进行。两种实验条件下的氧浓度均设定在铅铋的氧饱和条件下。以Fe/Fe3O4为稀土元素的氧化锆固体电解质氧传感器可以测量液态LBE中的氧浓度。结果表明,测量结果与能斯特方程理论计算结果吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of Oxygen Concentration in Static and Flowing Liquid Pb-Bi by Using Zirconia Based Sensor
Liquid Lead-Bismuth Eutectic (LBE) has been proposed as one of the coolant for the Generation IV nuclear reactor. However, the oxygen should be controlled adequately to suppress the corrosion rate of the LBE. A device called oxygen sensor made of zirconia as solid electrolyte has been used to monitor the oxygen concentration online in order to control the oxygen concentration. The principle of this sensor is based on electrochemistry method where the difference oxygen activitiy between reference electrode (RE) and working electrode (in liquid LBE) can make potential difference. The potential difference is measured by electrometer and can be converted into oxygen concentration based on Nernst equation. Iron (Fe)/Magnetite (Fe3O4) was used as material for RE in this study. Measurement of oxygen concentration was conducted at 450 - 600°C for the static condition of LBE and around 390°C for the dynamic condition of flowing LBE. The oxygen concentration for both two experiment conditions were set in oxygen saturated condition of Pb-Bi. The oxygen sensor based on zirconia solid electrolyte with Fe/Fe3O4 as RE can measured the oxygen concentration in liquid LBE. The results showed that the measurement was agreed with the Nernst equation theoretical calculation.
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