Method for deep roasting arsenic removal of arsenic-containing material
A material and roasting technology, applied in crucible furnaces, electric furnaces, rotary drum furnaces, etc., can solve the problems of poor calcine quality and poor arsenic removal effect, and achieve the effects of good calcine quality, high removal rate and simple process
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Embodiment 1
[0021] Finely grind the molybdenum-nickel ore containing 0.69% arsenic to ≤74μm, accounting for about 80%, mix it with calcium chloride according to 10% of the mass of the molybdenum-nickel ore, and then add a small amount of water to mix well and granulate to obtain pellets. Put it into a rotary kiln, control the volume percentage concentration of oxygen in the flue gas in the kiln to be 2.5% in a weak oxidizing atmosphere, and roast at a temperature of 1000 ° C for 2 hours to obtain a deeply de-arsenic calcined sand with arsenic content of 0.0075%.
Embodiment 2
[0023] Dissolve 5g of calcium chloride in 10ml of water, then mix and granulate with 100g of arsenic-containing gold concentrate powder containing 0.69% arsenic to obtain pellets, put the pellets into a rotary kiln, and control the volume percentage of oxygen in the flue gas in the kiln In a weak oxidizing atmosphere with a concentration of 2.5%, it is roasted at a temperature of 1000° C. for 2 hours to obtain deeply dearsenic calcined sand containing 0.05% arsenic.
Embodiment 3
[0025] Dissolve 5g of calcium chloride in 10ml of water, then mix with 100g of molybdenum powder containing 0.69% arsenic and granulate to obtain pellets, dry the pellets and put them into a rotary kiln to control the volume of oxygen in the flue gas in the kiln Under a weak oxidation atmosphere with a percentage concentration of 2.5%, it is roasted at a temperature of 1000° C. for 2 hours to obtain deeply dearsenic calcined sand containing 0.05% arsenic.
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