Low-temperature fused salt electrolytic cleaning metallurgy method and device for antimony
A low-temperature molten salt and electrolysis device technology, applied in the electrolysis process, electrolysis components, electrodes, etc., can solve the problems of complex equipment and high energy consumption, and achieve the effects of short process, low energy consumption and pollution reduction
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Embodiment 1
[0027] The chemical composition of antimony concentrate A is (%): Sb 54.7, Fe 2.8, S 15.7, As 0.35, Pb 0.22, SiO 2 11.4, Au 87.5g / t. Weigh 100g antimony concentrate A, 20g Na 2 S, 79.1 g NaCl and 100.9 g KCl. First add 20g Na 2S, 79.1g of NaCl and 100.9g of KCl were mixed evenly. Then take out 80g of the mixed molten salt and 100g of antimony concentrate A to continue mixing evenly. The mixed material is spread on the bottom of the hearth of the low-temperature molten salt electrolysis device through the antimony-containing material feed port, and then the remaining 120g mixed molten salt is spread on the upper layer of the mixture through the inert molten salt feed port. Adjust the height of the anode guide rod so that the graphite anode is inserted into the upper layer of inert molten salt, and the distance between the cathode and the anode is 4cm. Turn on the power supply of the external resistance heating layer and raise the temperature to 880°C. Turn on the pulse po...
Embodiment 2
[0029] The chemical composition of antimony concentrate B is (%): Sb 32.6, Fe 16.9, S 32.4, As 1.3, SiO 2 13.7, Pb0.17, Au 77.5g / t. Weigh 200g antimony concentrate B and 100g K respectively 2 S, 175.8g NaCl and 224.2g KCl. 100g K 2 S, 175.8g of NaCl and 224.2g of KCl were mixed evenly. Afterwards, 160 g was taken out from the uniformly mixed molten salt and mixed uniformly with 200 g of antimony concentrate B. The mixed material is spread on the bottom of the hearth of the low-temperature molten salt electrolysis device through the antimony-containing material feed port, and then the remaining 240g mixed molten salt is spread through the inert molten salt feed port on the upper layer of the mixture. Adjust the height of the anode guide rod so that the graphite anode is inserted into the upper layer of inert molten salt, and the distance between the cathode and the anode is 8cm. Turn on the power supply of the external resistance heating layer and raise the temperature to...
Embodiment 3
[0031] The chemical composition of antimony concentrate C is (%): Sb 78.2, As 2.6, Fe 1.6, Pb 0.3. Weigh 100g antimony concentrate C, 15g Na 2 S, 48.3g NaCl and 61.7g KCl. First 15g Na 2 S, 48.3g of NaCl and 61.7g of KCl were mixed evenly. Afterwards, 50 g was taken out from the uniformly mixed molten salt and mixed with 100 g of antimony concentrate C. Spread the mixed material on the bottom of the hearth of the low-temperature molten salt electrolysis device through the antimony-containing material feed port, and then spread the remaining 75g of mixed molten salt on the upper layer of the mixture through the inert molten salt feed port. Adjust the height of the anode guide rod so that the graphite anode is inserted into the upper layer of inert molten salt, and the distance between the cathode and the anode is 6cm. Turn on the power supply of the external resistance heating layer and raise the temperature to 850°C. Turn on the pulse power supply and set the initial puls...
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