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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

Active Publication Date: 2017-04-19
GUIZHOU BRANCH CHINA ALUMINUM IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the large differences in hardness, toxic ion content and composition of waste cathodes and waste refractory materials, when they are mixed together, not only will the waste refractory materials be over-grinded but the waste cathodes will not be finely ground when they are mixed together. Adding reactants to the reaction chamber will cause problems such as insufficient reaction and poor reaction effect
In addition, due to the different properties of the waste cathode and waste refractory materials, they cannot be used reasonably after harmless treatment.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

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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PUM

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Abstract

The invention relates to a hazard-free treatment and utilization method for an aluminium electrolysis waste slot liner. The hazard-free treatment and utilization method is characterized by comprising the steps of (1) performing sorting and separating on the aluminium electrolysis waste slot liner based on an aluminium electrolysis waste negative electrode carbon material and a waste fireproof material; (2) performing smashing separately; (3) performing powder grinding separately; (4) measuring content values of cyanogen and fluorine;(5) adding a solid cyanogen removal agent and a solid fluorine removal agent, and performing material mixing; (6) performing a cyanogen removal and fluorine removal and neutral reaction on the waste fireproof material; (7) performing a cyanogen removal and fluorine removal reaction on the waste negative electrode carbon material; (8) pressing and filtering material slurry obtained in the step (6), recycling the filtering liquid, and taking filtering slag for road pavement; and (9) pressing and filtering material slurry obtained in the step (7), recycling the filtering liquid, and taking filtering slag as carbon brick for manufacturing a blast furnace. By adoption of the hazard-free treatment and utilization method, different kinds of waste materials in the waste slot liner are processed, respective optimal technological parameters specific to different kinds of waste materials are selected, and the hazard-free slag can be sorted and reasonably recycled.

Description

technical field [0001] The invention relates to a harmless treatment and utilization method of aluminum electrolysis waste tank lining, which relates to a method for the treatment and recycling of solid hazardous waste in the aluminum electrolysis industry. Background technique [0002] The aluminum electrolytic cell used in the aluminum electrolysis process generally runs for 5-8 years and will be shut down for overhaul due to various reasons. Materials, insulation bricks, calcium silicate boards, other refractory insulation materials, etc., due to the long-term operation of the aluminum electrolytic cell, the above materials will contain sodium fluoride, cryolite, aluminum fluoride, calcium fluoride, alumina, etc. , because it contains soluble fluoride and trace cyanide, it is listed as industrial solid hazardous waste and must be treated innocuously. [0003] With the country's emphasis on environmental protection in recent years, most of the aluminum electrolysis enterp...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B20/02C04B18/16
CPCC04B18/16C04B20/023C04B20/026Y02W30/91
Inventor 罗钟生史志荣陈开斌杜婷婷孙丽贞
Owner GUIZHOU BRANCH CHINA ALUMINUM IND
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