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Development of a Li_2O Sensor Based on a Yttria Stabilized Zirconia Membrane for Oxide Reduction in a Molten LiCI-Li_2O Electrolyte at 650℃

机译:基于氧化钇稳定的氧化锆膜的Li_2O传感器在650℃熔融LiCl-Li_2O电解质中还原氧化物的研究

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LiCl-Li_2O salt is a widely used electrolyte for the electrochemical reduction of spent oxide (mainly uranium oxide) fuels, and the Li_2O concentration is usually controlled at about 1.41 mol % for optimum operation and corrosion mitigation of the platinum anode material. Due to the small difference in reduction potential between UO_2 and Li_2O, some Li_2O will be reduced during the oxide reduction process, leading to a Li_2O deviation from the desired 1.41 mol %. Monitoring of the Li_2O concentration is desired for proper control of the electrochemical oxide reduction process. In this paper, a Li_2O sensor based on a yttria stabilized zirconia (YSZ) membrane was developed and tested to evaluate the feasibility of using the Li_2O sensor to monitor the Li_2O concentrations in the range of 0.57 to 1.69 mol % Li_2O in LiCl-Li_2O salt systems—one without dissolved Li metal and another with 0.24 mol % dissolved Li metal. The experimental results show that the open circuit potential of the Li_2O sensor logarithmically responded to the concentration of Li_2O in LiCl-Li_2O salts with or without the presence of Li metal, suggesting that YSZ appears promising for real-time monitoring of the Li_2O concentration in LiCl-Li_2O salt for an oxide reduction process. The Li_2O sensor developed herein is based on a potentiometry measurement that requires a stable, reliable reference electrode (RE), particularly for long-term Li_2O concentration monitoring. To this end, a novel Ag/AgCl RE that is contained in a high-density MgO tube with a closed end was developed and exhibited stable electrode potential, chemical compatibility with LiCl-Li_2O, and good mechanical strength. The performance of the newly developed Ag/AgCl RE was demonstrated in Li_2O monitoring by comparing it with a traditional Ni/NiO RE.
机译:LiCl-Li_2O盐是一种用于电化学还原废氧化物(主要是铀氧化物)燃料的广泛使用的电解质,通常将Li_2O的浓度控制在约1.41 mol%,以实现最佳操作和减轻铂阳极材料的腐蚀。由于UO_2和Li_2O之间的还原电势差很小,因此在氧化物还原过程中会还原一些Li_2O,导致Li_2O与所需的1.41 mol%的偏差。为了适当控制电化学氧化物的还原过程,需要监测Li_2O的浓度。本文开发了基于氧化钇稳定的氧化锆(YSZ)膜的Li_2O传感器,并进行了测试,以评估使用Li_2O传感器监测LiCl-Li_2O盐中Li_2O浓度在0.57至1.69 mol%Li_2O范围内的可行性。系统—一种不含溶解的锂金属,另一种不含0.24 mol%的溶解锂金属。实验结果表明,Li_2O传感器的开路电势对数与LiCl-Li_2O盐中有无金属锂存在的Li_2O浓度成对数关系,这表明YSZ有望用于实时监测LiCl中Li_2O的浓度。 -Li_2O盐用于氧化物还原过程。本文开发的Li_2O传感器基于电位计测量,该电位计需要稳定,可靠的参比电极(RE),特别是用于长期Li_2O浓度监测。为此,开发了一种新型Ag / AgCl RE,它包含在具有封闭端的高密度MgO管中,并具有稳定的电极电势,与LiCl-Li_2O的化学相容性和良好的机械强度。通过将Li_2O与传统的Ni / NiO RE进行比较,可以证明新开发的Ag / AgCl RE的性能。

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