Starting method for aluminum cell
An aluminum electrolytic cell and electrolyte technology, applied in the field of aluminum electrolytic cell start-up, can solve the problems of increasing cryolite loss of labor intensity of workers, adverse effects of electrolytic cell cathode lining, excessive carbon cathode sodium, etc., to achieve electrolyte temperature change Gentle, avoid molecular ratio fluctuations, improve the effect of stability
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Embodiment 1
[0012] Taking the 300KA electrolytic cell as an example, after laying the coke grains and hanging the poles during the furnace installation, firstly use cardboard to seal the top and side of the gap between the anode electrodes, and then add 6.3 tons of thick iron to the edge of the bottom palm close to the anode around the tank chamber. 0.9 tons of calcium fluoride is evenly spread on the artificial legs, 0.5 tons of magnesium fluoride is evenly added on the calcium fluoride, and 0.7 tons of soda ash is evenly added close to the anode, and then tightly on the cryolite. Install 2 tons of electrolyte blocks on the side carbon block; add 19 tons of high molecular ratio cryolite, 0.17 tons of calcium fluoride, 0.16 tons of magnesium fluoride, 0.16 tons of soda ash and 2.8 tons of electrolyte blocks after starting.
Embodiment 2
[0014] Taking the 300KA electrolytic cell as an example, after laying the coke grains and hanging the poles during furnace installation, firstly use cardboard to seal the top and side of the gap between the anode electrodes, and then add 5.8 tons of thick iron to the edge of the bottom palm close to the anode around the tank chamber. 1.2 tons of calcium fluoride is evenly spread on the artificial legs, 0.6 tons of magnesium fluoride is evenly added on the calcium fluoride, and 0.8 tons of soda ash is evenly added close to the anode, and then tightly on the cryolite. Install 2 tons of electrolyte blocks on the side carbon block; add 17.4 tons of high molecular ratio cryolite, 0.24 tons of calcium fluoride, 0.2 tons of magnesium fluoride, 0.2 tons of soda ash and 3.2 tons of electrolyte blocks after starting.
Embodiment 3
[0016] Taking the 300KA electrolytic cell as an example, after laying the coke grains and hanging the poles during the furnace installation, firstly use cardboard to seal the top and side of the gap between the anode electrodes, and then add 6 tons thick 1.1 tons of calcium fluoride is evenly spread on the artificial legs, 0.5 tons of magnesium fluoride is evenly added on the calcium fluoride, and 0.8 tons of soda ash is evenly added close to the anode, and then tightly on the cryolite. Install 2T of electrolyte block on the side carbon block; after start-up, add 21 tons of high molecular ratio cryolite, 0.2 tons of calcium fluoride, 0.13 tons of magnesium fluoride, 0.19 tons of soda ash and 3 tons of electrolyte blocks.
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