Method for separating and recycling vanadium and chromium
A recovery method, the technology of vanadium chromium, applied in the direction of improving process efficiency, etc., can solve problems such as slowness, and achieve the effect of simple process, small amount of chemical input, and few types of chemical agents
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Embodiment 1
[0022] (1) Take 1L vanadium chromium solution, which contains 1020ppm Cr( ) and 205ppm V( ).
[0023] (2) Add 3.4g Na2SO3, adjust pH=2.3 with 1:1 sulfuric acid, stir for 10min; add 3mol / L caustic soda solution to adjust pH to pH=7.5, precipitate and stand still.
[0024] (3) Filter the precipitate; the filtered solution contains very low vanadium and chromium and can be recycled as industrial water; the filter cake is dried in an oven at 50°C for 1 hour.
[0025] (4) Break the dried filter cake to keep the particle size below 2mm.
[0026] (5) Calcinate the crushed filter residue at 900°C for 1.5 hours.
[0027] (6) Stir and dissolve the calcined product with 10% hydrochloric acid, the solid-to-liquid ratio is 1:50, and then filter. 1250ppm of vanadium is dissolved in the liquid phase, while only 10ppm of chromium is dissolved, and most of the chromium remains in the solid phase .
[0028] (7) Add hydrogen peroxide in the amount of complete vanadium oxidant to the filte...
Embodiment 2
[0031] (1) Take 1L vanadium chromium solution, which contains 1500ppm Cr( ) and 202ppm V( ).
[0032] (2) Slowly feed 5L SO2 gas, and use a closed gas collection device to circulate it until it is completely absorbed. Use 1:1 sulfuric acid to adjust pH=2.3, stir for 10min; add 3mol / L caustic soda solution to adjust pH=7.5, precipitate and stand still.
[0033] (3) Filter the precipitate; the filtered solution contains very low vanadium and chromium and can be recycled as industrial water; the filter cake is dried in an oven at 50°C for 1 hour.
[0034] (4) Break the dried filter cake to keep the particle size below 2mm.
[0035] (5) Calcinate the crushed filter residue at 900°C for 1.5 hours.
[0036] (6) Stir and dissolve the calcined product with 10% hydrochloric acid, the solid-to-liquid ratio is 1:30, and then filter. The liquid phase dissolves 1820ppm of vanadium, while only 12ppm of chromium is dissolved, and most of the chromium remains in the solid phase .
[0...
Embodiment 3
[0040] (1) Crushing the vanadium-chromium reduction slag to keep the particle size below 2mm.
[0041] (2) Calcinate the crushed reducing slag at 500°C for 1 hour.
[0042] (3) Use 10% hydrochloric acid to stir and dissolve the calcined product, the solid-to-liquid ratio is 1:30, and then filter. The liquid phase dissolves 1820ppm of vanadium, while only 12ppm of chromium is dissolved, and most of the chromium remains in the solid phase .
[0043] (4) Add sodium percarbonate in the amount of vanadium complete oxidant to the filtered liquid, stir for 30min, then heat to above 90°C for hydrolysis and precipitation of vanadium.
[0044] (5) The filter residue was dried in an oven at 60°C for 1 hour to obtain chromium trioxide.
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