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首页> 外文期刊>Cearmics >REDOX BEHAVIOR AND DIFFUSIVITY OF ANTIMONY AND CERIUM ION IN ALKALI ALKALINE EARTH SILICATE GLASS MELTS
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REDOX BEHAVIOR AND DIFFUSIVITY OF ANTIMONY AND CERIUM ION IN ALKALI ALKALINE EARTH SILICATE GLASS MELTS

机译:碱土硅酸盐玻璃熔体中锑和铈离子的氧化还原行为和扩散

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摘要

Redox behavior and diffusivity of antimony and cerium ion in alkali alkaline earth silicate CRT (Cathode Ray Tube) model glass melts were studied by means of square wave voltammetry under the frequency range of 5-1000 Hz and in the temperature range of 800-1400 ℃. According to voltammogram, peaks due to Sb~(3+)/Sb~0 were positioned in the negative potential region while peaks due to Sb~(5+)/Sb~(3+) and Ce~(4+)/Ce~(3+) were found in the positive potential region. By using some equations, correlation for peak potential versus temperature and peak current versus reciprocal frequency was examined, respectively. Their correlation showed a linear relation in the applied temperature and frequency range. Based on the linear relationship, thermodynamic and kinetic properties for each redox reaction were suggested.
机译:用方波伏安法研究了碱土金属硅酸盐CRT(阴极射线管)模型玻璃熔体中锑和铈离子的氧化还原行为和扩散率,在5-1000 Hz频率范围和800-1400℃温度范围内。根据伏安图,由Sb〜(3 +)/ Sb〜0引起的峰位于负电位区域,而由Sb〜(5 +)/ Sb〜(3+)和Ce〜(4 +)/ Ce引起的峰位于负电位区域。在正电位区域中发现〜(3+)。通过使用一些方程,分别检查了峰值电势与温度的关系以及峰值电流与倒数频率的相关性。它们的相关性在所施加的温度和频率范围内呈线性关系。根据线性关系,提出了每个氧化还原反应的热力学和动力学性质。

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