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Wear of Carbon Cathodes in Cryolite-Alumina Melts

机译:冰晶石-氧化铝熔体中碳阴极的磨损

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Wear of carbon cathode blocks is one of the main factors limiting the lifetime of aluminium electrolysis cells. A laboratory test cell set-up has been designed to investigate the wear mechanism. A homogeneous graphite material was exposed to three different bath compositions (CR = 2.25, 1.80 and 1.50) with variable cathode rotation speed, cathodic current density and time of electrolysis. The wear was strongly influenced by bath acidity, i.e higher wear was observed at CR = 1.8, probably due to higher carbide solubility in the bath. The wear also increased with current density at CR = 1.8, indicating an electrochemical wear mechanism. The cathode samples have been investigated after the tests using optical and scanning electron microscopy. Aluminium carbide was only found at the surface area of the cathode that was protected by a sintered alumina lining, while on the areas directly exposed to the electrolyte no carbide was detected.
机译:碳阴极块的磨损是限制铝电解槽寿命的主要因素之一。设计了一个实验室测试单元,以研究磨损机理。将均质的石墨材料暴露于三种不同的浴液成分(CR = 2.25、1.80和1.50)中,并改变阴极转速,阴极电流密度和电解时间。熔池的酸度严重影响了磨损,即在CR = 1.8时观察到了较高的磨损,这可能是由于熔池中碳化物的溶解度较高所致。随着电流密度在CR = 1.8时,磨损也会增加,这表明存在电化学磨损机制。在测试之后,使用光学和扫描电子显微镜对阴极样品进行了研究。碳化铝仅在由烧结氧化铝衬里保护的阴极表面积上发现,而在直接暴露于电解液的区域上未发现碳化物。

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