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固相輔助電極型傳感器的物理模型

Physical Model of a Solid Auxiliary Electrode Silicon Sensor

  • 摘要: 用研制的Mg2SiO4(s)+MgO(s)硅傳感器,對高碳冶金熔液中的硅進行了測量,發現輔助電極的物相結構和熔體中的氧含量對測量結果有明顯的影響.首先提出了輔助電極型傳感器的物理模型,導出了輔助電極的局域平衡氧勢與熔體氧勢和硅傳感器測量結果的關系式,給出了覆蓋常數和結構常數的物理意義.用實驗數據擬合得到了該傳感器的結構常數為6.66;用該模型對小于1的不同覆蓋常數的硅傳感器測得同一熔體的氧勢進行了校正,得到了一致的局域平衡氧勢值,證明了模型與實際吻合得相當好.

     

    Abstract: The silicon in high carbon metallurgical melt was tested with a developed Mg2SiO4(s)+MgO(s) silicon sensor. It was found that the phase construction of the auxiliary electrode and the oxygen component in the melt has an obvious effect on the measuring result. A physical model of this silicon sensor was proposed at the first time. The expression of local equilibrium silicon-oxygen potential, related to the oxygen potential of the melt and directly measured results, was derived. The physical meanings of coverage constant and structure constant were described. The structure constant was calculated to be 66.6 by means of fitting the experimental data. The measured oxygen potental, obtained with different silicon sensors whose coverage constant is less than 1, was corrected with the derived expression. The values of local equlibrium oxygen potential are the same. This testified that the physical model conforms to the practice.

     

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