Hazard-free treatment and utilization method for aluminium electrolysis waste slot liner
A technology of harmless treatment and waste cathode of aluminum electrolysis, which is applied in the direction of sustainable waste treatment, solid waste management, climate sustainability, etc., can solve the problems of unutilized, insufficient reaction, poor reaction effect, etc., and achieve reduction The effect of feeding device and automatic control equipment, avoiding waste of time, efficient and reasonable utilization
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Embodiment 1
[0034] A method for harmless treatment and resource utilization of aluminum electrolysis waste tank lining, the operation steps are:
[0035] (1) Sorting: Sorting waste cathode carbon blocks, various waste pastes and anti-seepage materials, insulation bricks, calcium silicate boards and other waste refractory materials in the waste tank lining of aluminum electrolytic cells, and sorting Carbonaceous materials such as waste cathodes and waste refractory materials are stacked separately.
[0036] (2) Crushing: separate and separate the sorted aluminum electrolysis waste cathodes and waste refractory materials to materials with a particle size of <15mm.
[0037] (3) Grinding: Separately grind the crushed waste cathode and waste refractory materials to a particle size below 50 mesh.
[0038] (4) Sampling analysis: multiple points of waste refractories are sampled, and the content of its cyanide ion is 9.5 mg / L, the content of fluoride ion is 2829 mg / L, and the solution pH=9; mult...
Embodiment 2
[0044] A method for harmless treatment and resource utilization of aluminum electrolysis waste tank lining, the operation steps are:
[0045] (1) Sorting: Sorting waste cathode carbon blocks, various waste pastes and anti-seepage materials, insulation bricks, calcium silicate boards and other waste refractory materials in the waste tank lining of aluminum electrolytic cells, and sorting Carbonaceous materials such as waste cathodes and waste refractory materials are stacked separately.
[0046] (2) Crushing: separate and separate the sorted aluminum electrolysis waste cathodes and waste refractory materials to materials with a particle size of <15mm.
[0047] (3) Grinding: Separately grind the crushed waste cathode and waste refractory materials to a particle size below 50 mesh.
[0048] (4) Sampling analysis: multiple points of waste refractory are sampled, and the content of its cyanide ion is 12.7 mg / L, the content of fluoride ion is 2540 mg / L, and the pH of the solution i...
Embodiment 3
[0054] A method for harmless treatment and resource utilization of aluminum electrolysis waste tank lining, the operation steps are:
[0055] (1) Sorting: Sorting waste cathode carbon blocks, various waste pastes and anti-seepage materials, insulation bricks, calcium silicate boards and other waste refractory materials in the waste tank lining of aluminum electrolytic cells, and sorting Carbonaceous materials such as waste cathodes and waste refractory materials are stacked separately.
[0056] (2) Crushing: separate and separate the sorted aluminum electrolysis waste cathodes and waste refractory materials to materials with a particle size of <15mm.
[0057] (3) Grinding: Separately grind the crushed waste cathode and waste refractory materials to a particle size below 50 mesh.
[0058] (4) Sampling analysis: Sampling waste refractory materials at multiple points, measuring the content of 11.3mg / L of cyanide ion, 1896mg / L of fluoride ion, solution pH=8.5; sampling waste cath...
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