Method for separating and recovering selenium in chalcogenide glass waste
A technology for separation and recovery of chalcogenide glass, applied in the field of hydrometallurgy, which can solve problems such as low recovery rate, sulfur dioxide pollution, and large flue gas volume, and achieve the effects of low cost, simple equipment, and short process
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Embodiment 1
[0060] (1) The chalcogenide glass waste containing 38.6% of selenium, 12.5% of germanium, and 12.6% of arsenic is crushed and ball-milled by crushing ball milling equipment, and passed through a 200-mesh sieve to obtain a powder with a particle size of less than 75 μm.
[0061] (2) Weigh 100g of the powder obtained in step (1), add 300mL of 500g / L NaOH solution, heat up to 90°C, and react for 4h at a stirring speed of 600r / min, then add 400mL of water, and continue the heat preservation reaction After 1 h, cool and filter to obtain 800 mL of mixed solution.
[0062] Sampling and inspection, using ICP-MS to detect Ge, As, and Se in the above mixed solution, the contents are: Ge15.432g / L, As 15.671g / L, Se 47.62g / L; after calculation, the germanium leaching rate is 98.8% , The leaching rate of arsenic is 99.5%, and the leaching rate of selenium is 98.7%.
[0063] (3) Measure 500mL of the mixed solution obtained in step (2), slowly add concentrated sulfuric acid at a stirring s...
Embodiment 2
[0068] (1) The chalcogenide glass waste containing 38.6% of selenium, 12.5% of germanium, and 12.6% of arsenic is crushed and ball-milled by crushing ball milling equipment, and passed through a 200-mesh sieve to obtain a powder with a particle size of less than 75 μm.
[0069] (2) Weigh 100g of the powder obtained in step (1), add 400mL of 400g / L NaOH solution, heat up to 80°C, and react for 5h at a stirring speed of 600r / min, then add 400mL of water, and continue the heat preservation reaction After 1 h, 895 mL of mixed solution was obtained by cooling and filtration.
[0070] Sampling and inspection, using ICP-MS to detect Ge, As, and Se in the above mixed solution, the contents are respectively: Ge13.757g / L, As 14.036g / L, Se 42.74g / L; after calculation, the leaching rate of germanium is 98.5% , The leaching rate of arsenic is 99.7%, and the leaching rate of selenium is 99.1%.
[0071] (3) Measure 500mL of the mixed solution obtained in step (2), slowly add concentrated ...
Embodiment 3
[0076] (1) The chalcogenide glass waste containing 38.6% of selenium, 12.5% of germanium, and 12.6% of arsenic is crushed and ball-milled by crushing ball milling equipment, and passed through a 200-mesh sieve to obtain a powder with a particle size of less than 75 μm.
[0077] (2) Weigh 100g of the powder obtained in step (1), add 500mL of 500g / L NaOH solution, heat up to 70°C, and react for 6h at a stirring speed of 600r / min, then add 400mL of water and continue the heat preservation reaction After 1 h, cool and filter to obtain 990 mL of mixed solution.
[0078] Sampling was sent for inspection, and Ge, As, and Se in the above mixed solution were detected by ICP-MS, and their contents were respectively: Ge 12.5g / L, As 12.52g / L, Se 38.72g / L; after calculation, the germanium leaching rate was 99.0% , The leaching rate of arsenic is 98.4%, and the leaching rate of selenium is 99.3%.
[0079] (3) Measure 500mL of the mixed solution obtained in step (2), slowly add concentrat...
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