A comprehensive utilization method of copper smelting tailings
A technology of tailings and copper smelting, which is applied in the field of comprehensive utilization of copper smelting tailings, can solve the problems of blast furnace water slag and steel slag in short supply, ineffective and reasonable utilization, strong demand for cement consumption, etc., and achieve high modification and activation efficiency, Efficient resource utilization and good effect of cascade utilization
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Embodiment 1
[0024] Firstly, the electric furnace copper smelting slag with copper content and iron content of 1.5% and 35.5%, respectively, adopts a self-grinding process and a closed-circuit classification process of semi-autogenous grinding to obtain a slurry of -0.045mm accounting for 78%; The selection process is a closed-circuit flotation process of primary roughing, secondary sweeping and triple selection to obtain the grade of copper concentrate, and re-select the tailings from the copper smelting tailings of the electric furnace. The electric furnace copper smelting tailings were re-selected tailings, and the magnetic field strength was selected as 2100Oe, 4500Oe, 9200Oe respectively after three times of magnetic separation, and the electric furnace copper smelting tailings with iron content of 42.2%, 37.8%, 31.5% and 28.6% were obtained Then choose the tailings. The electric furnace copper smelting tailings after magnetic separation are re-selected tailings, one or more of them a...
Embodiment 2
[0026] First, the converter copper smelting slag with copper content and iron content of 2.8% and 38.2% respectively, adopts a self-grinding process and a semi-autogenous closed-circuit classification process to obtain a slurry of -0.074mm accounting for 90%; The selection process is a closed-circuit flotation process of primary roughing, secondary sweeping and triple selection to obtain the grade of copper concentrate, and re-select the tailings from the copper smelting tailings of the electric furnace. The converter copper smelting tailings are re-selected tailings, and the magnetic field strength is selected as 2050Oe, 4300Oe, 9000Oe respectively after three times of magnetic separation to obtain converter copper smelting tailings with iron content of 43.5%, 38.2%, 32.6% and 28.3% Then choose the tailings. The converter copper smelting tailings after magnetic separation are re-selected tailings, and one or more of them are added respectively with 0.9% sodium sulfate and 0.0...
Embodiment 3
[0028] Firstly, the electric furnace and converter mixed copper smelting slag with copper content and iron content of 1.9% and 36.7% respectively, adopts three-stage one closed-circuit crushing and screening process and two-stage one closed-circuit grinding and grading process to obtain -0.074mm 86% slurry; the selected flotation process is a closed-circuit flotation process of primary roughing, secondary sweeping, and triple beneficiation to obtain the grade of copper concentrate, and mix copper smelting tailings to re-select the tailings. The mixed copper smelting tailings are re-selected tailings, and after three times of magnetic separation, the magnetic field strengths are respectively selected as 2100Oe, 4200Oe, 9300Oe, and the mixed copper smelting tailings with iron content of 40.6%, 37.2%, 32.2% and 28.1% are obtained Then choose the tailings. The mixed copper smelting tailings after magnetic separation are re-selected tailings, and one or more of them are added respe...
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