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Formation of Aluminium Carbide in Hall-Heroult Electrolysis Cell Environments

机译:霍尔-电解电解池环境中碳化铝的形成

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The formation and dissolution of aluminium carbide under conditions similar to the chemical and electrochemical environments in the Hall-Heroult process were studied in laboratory cells, including cells with reversed polarization. The cross sections of the various electrochemical cells after the electrolysis experiments were characterized by optical and electron microscopy. A relatively dense layer of aluminium carbide was observed on the carbon cathode surface under conventional electrolysis conditions. Aluminium carbide was also found in the pores of the cathode together with bath, while only bath was found in the anode. While the direct chemical reaction between carbon and aluminium to form AI_4C_3 is slow, the polarisation of the cathode and electrolysis were demonstrated to have a pronounced effect on the formation of AI_4C_3. The present finding is discussed with emphasis of the difference between chemical and electrochemical formation of AI_4C_3 and the importance of the initial presence of aluminium at the cathode.
机译:在实验室细胞中研究了在实验室细胞中与化学和电化学环境类似的条件下碳化铝的形成和溶解,包括具有逆转极化的细胞。通过光学和电子显微镜表征在电解实验之后各种电化学电池的横截面。在常规电解条件下在碳阴极表面上观察到相对致密的碳化铝层。还发现铝合金在阴极孔与浴缸中,而在阳极中仅发现浴。虽然碳和铝之间的直接化学反应形成Ai_4C_3缓慢,但是阴极和电解的偏振被证明对形成AI_4C_3的形成具有显着的影响。目前发现讨论了AI_4C_3的化学和电化学形成的差异,以及铝在阴极处的初始存在的重要性。

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