Non-oxidation non-reduction fire refining process for copper
A pyro-refining, non-oxidizing technology, used in crucible furnaces, electric furnaces, rotary drum furnaces, etc., can solve the problems of not fundamentally eliminating black smoke pollution, shortening operation time, and low production efficiency, so as to solve black smoke pollution. problems, achieve zero emission of black smoke, and the effect of high production efficiency
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Embodiment 1
[0018] like figure 1 and figure 2 As shown, the blowing copper liquid with an oxygen content of 0.05-0.30% is put into the rotary anode furnace 10, the stirring gas is sent to the gas storage tank 2 through the compressor 1, and the pressure is reduced to 0.2-0.8 MPa through the pressure reducing valve 3 , observe the pressure gauge 4, thermometer 5 and flow meter 6, and adjust the gas flow to 50-3000Nm with the regulating valve 7 3 / h, the gas enters the copper liquid through the breathable brick 8 at the bottom of the furnace for stirring operation to the end, and the number of breathable bricks is determined according to the size of the furnace. In addition, the stirring gas can also be passed into the side tuyere 9 of the rotary anode furnace 10 to enter the copper liquid for stirring operation. The stirring gas used is argon (Ar≥96%), nitrogen (N 2 ≥96%), one or more mixtures of saturated steam, gas temperature: 25-120°C for argon or nitrogen, 143-170°C for saturated ...
Embodiment 2
[0020] like image 3 As shown, the blowing copper liquid with an oxygen content of 0.05-0.30% is put into the reflective anode furnace 12, the stirring gas is input into the gas storage tank 2 through the compressor 1, and the pressure is reduced to 0.2-0.8 MPa through the pressure reducing valve 3, During operation, open the regulating valve 7, observe the pressure gauge 4, the thermometer 5 and the flow meter 6, and the stirring gas enters the copper liquid through the iron pipe 11 covered with refractory mud at the front end to carry out the stirring operation to the end. Stirring gas type, temperature, flow rate and furnace internal pressure are the same as in Example 1.
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