A method for reprocessing tailings produced after comprehensive treatment of waste incineration slag
A waste incineration slag, comprehensive treatment technology, applied in chemical instruments and methods, magnetic separation, solid separation and other directions, can solve the problems of unmentioned tailings, environmental pollution, waste of resources, etc., and achieves remarkable recovery effect and high strength. , the effect of rapid prototyping
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Embodiment 1
[0023]Rendering method of tail residue generated after garbage burning slag, including the following steps:
[0024](1) Collecting the waste incinerator slag after the metal recovery process flows into the slag-containing tank containing light slag powder, then fed into the first roller sieve, the first roller sieve is 1.5m, the length is 6m, the sieve 0.8 cm, after screening, the particle size greater than 0.8 cm tail residue is sent to the first metal sorter for the recovery of metal aluminum; the magnetic selector strength of the first metal separator is 3500T, the raw material is transported by about 12 tons. / Hour, the conveyor bandwidth is 1.2 meters, and the speed is 3 meters per second.
[0025](2) The particle size is less than 0.8 cm, the tail residue is sent to the second roller sieve, the second roller sieve is 1.5m, the length is 8m, the screen is 0.3 cm, and the screen is sent after the screening Enter the vibration dehydration machine for dehydration;
[0026](3) After dehydr...
Embodiment 2
[0032]Re-treatment method of tail degenesis generated after garbage incinerator slag, wherein step (4), with a weight gauge, take 6 parts of cement, 105 modified tail degenesis, 6.8 parts of ceramic powder, 4 parts. Sodium sulfate, 0.8 parts of 4,4'-octylamine, 2.3 sodium citrate, 0.31 parts of phosphite and 2.2 parts of polyvinyl butyral. The remaining technical content is the same as in Example 1.
[0033]Tested, the evapotrophic bricks prepared by the present invention were 4.87 mPa, and the compressive strength was 33.2 MPa.
Embodiment 3
[0035]Re-treatment method of tail residue generated after garbage incinerator slag, wherein step (4), 5.5 parts of cement, 110 modified tail degenesis, 8 parts of ceramic powder, 3.5 parts sodium sulfate, 0.6 parts 4,4'-octyl diphenylamine, 1.5 sodium citrate, 0.4 serial phosphite and 2 parts of polyvinyl butyral. The remaining technical content is the same as in Example 1.
[0036]Tested, the anti-compensation strength of the evapotrophic brick prepared by the present invention was 5.2 MPa, and the compressive strength was 35.1 MPa.
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