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Performance of solid electrolyte oxygen sensor with solid and liquid reference electrode for liquid metal

机译:固态和液态参比​​电极用于液态金属的固体电解质氧传感器的性能

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As the performance of the solid electrolyte oxygen sensor, the effects of an amount of residual air in the reference electrode (RE) on the stabilization time to an equilibrium condition was investigated for solid electrolyte oxygen sensors with solid Fe-Fe_3O_4 RE and liquid metal Bi-Bi_2O_3 RE in the tests in an air atmosphere with constant oxygen potential. It was found that the reduction of the volume of the gas region in the reference compartment by an inert material make the stabilization time of RE shorter, where the stabilization time is the time required to the changes from initial setup conditions to the equilibrium conditions in the reference electrode sides. Under the equilibrium conditions of the oxygen potentials both in the solid Fe-Fe_3O_4 RE and liquid metal Bi-Bi_2O_3 RE, the sensor output showed the stable cell potential which agreed well with the theoretical one given by the Nernst equation. It was also found that the stabilization time of solid Fe-Fe_3O_4 RE was shorter than that of liquid metal Bi-Bi_2O_3 RE in the air atmosphere. The sensors with the solid Fe-Fe_3O_4 RE and liquid metal Bi-Bi_2O_3 RE were tested in the atmospheres of a static molten lead-bismuth eutectic (LBE) where the oxygen potentials were controlled to be those with the PbO and Fe_3O_4 formation potentials by mass-exchanger method. Under the equilibrium conditions of oxygen potential both in the reference electrodes and in the molten LBE atmospheres, the sensor output showed the stable cell potential which agreed well with the theoretical ones given by the Nernst equation.
机译:作为固体电解质氧传感器的性能,研究了具有固体Fe-Fe_3O_4 RE和液态金属Bi的固体电解质氧传感器中参比电极(RE)中残留空气量对稳定到平衡状态的时间的影响。 -Bi_2O_3 RE在恒定氧势的空气气氛中进行测试。已经发现,通过惰性材料减小参考隔室中气体区域的体积使得RE的稳定时间更短,其中稳定时间是从初始设置条件改变到平衡条件所需的时间。参比电极侧。在固态Fe-Fe_3O_4 RE和液态金属Bi-Bi_2O_3 RE中氧势处于平衡状态下,传感器输出显示出稳定的电池电势,该电势与能斯特方程给出的理论值非常吻合。还发现在空气气氛中,固态Fe-Fe_3O_4 RE的稳定时间比液态金属Bi-Bi_2O_3 RE的稳定时间短。在静态熔融铅-铋共晶(LBE)气氛中测试了具有固态Fe-Fe_3O_4 RE和液态金属Bi-Bi_2O_3 RE的传感器,在该气氛中,将氧势控制为具有PbO和Fe_3O_4形成势的质量交换器方法。在参比电极和熔融LBE气氛中的氧势平衡条件下,传感器输出显示稳定的电池电势,这与能斯特方程给出的理论值非常吻合。

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