Processing method for recycling aluminum dross
A treatment method, the technology of waste aluminum ash, which is applied in the field of metallurgy, can solve the problem of a lot of waste aluminum ash, achieve the effects of small environmental pollution, reduce environmental pollution, and save resource consumption
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Embodiment 1
[0027] a. Add crushed limestone and catalyst sodium carbonate to waste aluminum ash, and fully homogenize and mix the three materials. The weight ratio between the waste aluminum ash, limestone and sodium carbonate is 1: 1:0.2; the weight percentage of alumina in waste aluminum ash is 70%, the weight percentage of calcium oxide in limestone is 52.6%, and the particle size of crushed limestone is 160 mesh;
[0028] b. Put the fully homogenized and mixed material in step a into a roasting reaction furnace (that is, use a rotary kiln roaster) for catalytic roasting, and roast at a temperature of 1200 ° C for 1.5 hours;
[0029] c. Grinding the product obtained after roasting in step b to obtain calcium aluminate powder with a particle size of 100-200 mesh.
[0030] The analysis and test results of the product calcium aluminate powder: the weight percentage of alumina in the product calcium aluminate powder is 50%, and the weight percentage of calcium oxide is 31.2%.
[0031] Emb...
Embodiment 2
[0032] A treatment method for resource utilization of waste aluminum ash, the treatment method is different from Example 1 in that:
[0033] Step a: The weight ratio among the waste aluminum ash, limestone and sodium carbonate is 1:0.9:0.2; the weight percentage of aluminum oxide in the waste aluminum ash is 72.4%, and the calcium oxide in the limestone The weight percentage is 51.6%, and the particle size of the limestone after crushing is 130 mesh;
[0034] Step b: Put the fully homogenized and mixed materials in step a into a roasting reaction furnace (ie, a rotary kiln roaster) for catalytic roasting, and roast at a temperature of 1250°C for 1 hour;
[0035] Step c: cooling the product obtained after roasting in step b, and then grinding to obtain calcium aluminate powder with a particle size of 100-200 mesh.
[0036] The analysis and testing results of the product calcium aluminate powder: the weight percentage of alumina in the product calcium aluminate powder is 52%, a...
Embodiment 3
[0038] A treatment method for resource utilization of waste aluminum ash, the treatment method is different from Example 1 in that:
[0039] Step a: The weight ratio among the waste aluminum ash, limestone and sodium carbonate is 1:0.8:0.2; the weight percentage of aluminum oxide in the waste aluminum ash is 74%, and the calcium oxide in the limestone The weight percentage is 50%, and the particle size of the limestone after crushing is 200 mesh;
[0040] Step b: Put the fully homogenized and mixed materials in step a into a roasting reaction furnace (ie, a rotary kiln roaster) for catalytic roasting, and roast at a temperature of 1300°C for 1 hour;
[0041] Step c: cooling the product obtained after roasting in step b, and then grinding to obtain calcium aluminate powder with a particle size of 100-200 mesh.
[0042] The analysis and testing results of the product calcium aluminate powder: the weight percentage of alumina in the product calcium aluminate powder is 53.2%, and...
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