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鋁用石墨質陰極不同焙燒溫度下孔隙結構演化

Porous structure evolution of graphitic cathode materials for aluminum electrolysis at various baking temperatures

  • 摘要: 采用圖像分析方法研究鋁用石墨質陰極在不同焙燒溫度下孔隙結構特征及其演變,考察孔隙率、孔徑分布、形狀因子、視孔隙比表面積、連通性等參數的變化規律和孔隙復雜度的分形特征.結果表明:隨著焙燒溫度增加,孔隙率逐漸增大,而視孔隙比表面積、形狀因子和連通性呈先減小后增大趨勢;石墨質陰極試樣不同溫度下焙燒生成孔隙均符合分形規律,借助圖像分析孔隙結構參數和分形維數可界定不同典型焙燒溫度下陰極孔隙結構的演變特征,并據此提出相應的孔隙特征演化模式.

     

    Abstract: The porous structures and their evolution of graphitic cathode materials at various baking temperatures were investigated using the image analysis method. The porous structure parameters, such as porosity, pore size distribution, aspect ratio, specific surface area, and pore connectivity, were statistically calculated and the fractal features showing the degree of porous complexity were also analyzed. It is found that the porosity increases with increasing baking temperature, while the specific surface area, aspect ratio, and connectivity first decrease and then increase. The porous structure evolution of graphitic cathodes abides by the law of fractal behaviors and hence an evolution model has been proposed. This result indicates that the image analysis parameters and the fractal dimension can apply for characterizing the degree of porous structure evolution when subjected to a given baking temperature.

     

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