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Production Management of Aluminum Electrolysis at Super Low Voltage

机译:超低电压铝电解生产管理

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A new integrated energy-saving technology characteristic with protruding cathode blocks and high conductivity cathode collector bars was tested in 300 kA electrolysis cells. In order to maintain the normal operation at super low voltage, the technical parameters and operation management were optimized. Gauging was improved in anode changing and appropriate energy compensation was carried out, the heat loss and contact voltage drop were reduced as much as possible, and all the equipment was maintained in time. Under the determined process conditions, the cells ran efficiently and stably, the electrolyte superheat was kept in moderate range, the cell side ledge was kept at appropriate thickness, no sludge agglomerated on the bottom surface, and no carbon dust accumulated on the electrolyte surface. The following economic technological indexes of the test cells were achieved, the average voltage was 3.714-3.783 V, the current efficiency was 91.09-92.05%, and the DC power consumption was 12080-12246 kWh/tAl.
机译:用突出的阴极块和高导电性阴极集电棒的新集成节能技术特性在300ka电解细胞中进行测试。为了保持超低电压的正常操作,优化了技术参数和操作管理。测量在阳极变化中得到改善,进行了适当的能量补偿,尽可能减少热量损失和接触电压降,所有设备都保持在时间。在确定的过程条件下,电池有效且稳定地运行,电解质过热保持在中等范围内,电池侧壁架保持在适当的厚度下,在底表面上没有污泥,并且在电解质表面上没有累积碳粉尘。实现了测试细胞的以下经济技术指标,平均电压为3.714-3.783V,目前效率为91.09-92.05%,直流功耗为12080-12246千瓦时/缩小。

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