Method for reducing precipitation capacity in hearth of 400 KA electrolytic bath
An electrolytic cell and precipitation technology, applied in the field of electrolytic aluminum energy-saving process, can solve problems such as overheating, affecting electrolysis efficiency, poor furnace conductivity, etc., and achieve the effects of high current efficiency, enhanced self-balancing ability, and low power consumption production.
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[0019] A method for reducing the amount of sedimentation in a 400KA electrolyzer hearth, comprising the steps:
[0020] (1) Control voltage: The control voltage at the initial stage of electrolyzer startup is 8.92~9.93v, and the control voltage at other stages is set by conventional voltage data;
[0021] (2) Control the molecular ratio: after starting, the normal molecular ratio is stable between 2.62 and 2.66;
[0022] (3) Control electrolyte: the normal electrolyte level after starting is 18~20cm;
[0023] (4) Control the aluminum level: after starting, the aluminum level is controlled at 16.5~21cm;
[0024] (5) Control the electrolyte temperature: maintain the electrolyte temperature at 960°C~980°C within 1 month after start-up, and drop to the normal electrolyte temperature 930°C~940°C after 1 month.
[0025] According to the above-mentioned method for reducing the amount of precipitation in the hearth of the 400KA electrolytic cell, while performing the above content, ...
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