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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of TiO2 Addition on Grain Growth, Anodic Bubble Evolution and Anodic Overvoltage of NiFe2O4-Based Composite Inert Anodes
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Effect of TiO2 Addition on Grain Growth, Anodic Bubble Evolution and Anodic Overvoltage of NiFe2O4-Based Composite Inert Anodes

机译:TiO2添加对NiFe2O4复合惰性阳极籽粒生长,阳极泡沫进化和阳极过电压的影响

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摘要

A two-step powder compaction and sintering process was employed to fabricate TiO2-doped NiFe2O4 ceramic-based inert anodes. Grain growth during isothermal sintering was analyzed using Brook grain growth model. The bubble behavior of NiFe2O4 ceramic-based inert anodes was investigated in a twocompartment see-through quartz cell for aluminum electrolysis process. Anodic overvoltage and potential decay curves of the inert anodes were measured by using the steady state and current interruption technique. The results showed that the kinetic index of grain growth decreased with an increase in temperature. The average activation energy of grain growth for 1.0 wt.% TiO2-doped NiFe2O4 ceramic samples with a sintering temperature range from 1373 to 1673 K dropped from 675.30 to 183.47 kJ/mol. The diameter size of bubbles before releasing from the bottom surface of the anodes was reduced with increasing the current density, and the larger average releasing bubble size for carbon anode at the same current density could be obtained, which was compared to the NiFe2O4 inert anodes. Besides, the cell voltage of carbon anodes fluctuated much more violently under the same experimental conditions. After adding small amount of TiO2, a minor reduction in anodic overvoltage of NiFe2O4-based anodes can be observed.
机译:采用两步粉末压实和烧结工艺制造TiO2掺杂的NiFe2O4陶瓷基惰性阳极。使用Brook晶粒生长模型分析等温烧结过程中的谷物生长。在铝电解过程中,研究了NiFe2O4陶瓷基惰性阳极的泡沫行为。通过使用稳态和电流中断技术测量惰性阳极的阳极过电压和惰性阳极的电位衰减曲线。结果表明,温度升高,晶粒生长动力学指数降低。晶粒生长的平均活化能1.0重量%。%TiO2掺杂的NiFe2O4烧结温度范围为1373至1673k的陶瓷样品从675.30℃下降到183.47 kJ / mol。通过增加电流密度,减少了从阳极底表面释放之前的气泡的直径尺寸,并且可以获得相同电流密度的碳阳极的较大平均释放气泡尺寸,这与NiFe2O4惰性阳极相比。此外,在相同的实验条件下,碳阳极的电池电压波动得更剧烈。在添加少量TiO 2之后,可以观察到NiFe2O4阳极的阳极过电压的微小降低。

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