Method for removing vanadium from tungstate solution
A tungstate and solution technology, applied in the field of metallurgy, can solve the problems of large consumption and increased cost
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Embodiment 1
[0024] Na 2 WO 4 Solution 100mL, including: WO 3 : 20g / L, V 2 o 5 : 1.998g / L. According to molar ratio Fe:V=6, to Na 2 WO 4 FeCl was added to the solution 3 solution, and 2ml of 2.2mol / L NaOH solution was added to adjust the pH value of the solution to 8, and filtered after stirring for 30 minutes; the vanadium removal rate was 95.04% and the tungsten loss rate was 5.18%.
Embodiment 2
[0026] (NH 4 ) 2 WO 4 Solution 100mL, including: WO 3 : 75.94g / L, V 2 o 5 : 1.0651g / L. According to the molar ratio Fe: V = 8, to (NH 4 ) 2 WO 4 Fe(NO 3 ) 3 solution, and add 20ml of ammonia water to adjust the pH value of the solution to 9.52, and filter after stirring for 60 minutes; the vanadium removal rate is 95.84%, and the tungsten loss rate is 5.11%.
Embodiment 3
[0028] Na 2 WO 4 Solution 100mL, including: WO 3 : 100.85g / L, V 2 o 5 : 0.1151g / L. According to the molar ratio Fe: V = 13.83, toward Na 2 WO 4 Fe was added to the solution 2 (SO 4 ) 3 solution, and add 1.5ml of 2.2mol / L NaOH solution to adjust the pH value of the solution to 11.59, and filter after stirring for 100 minutes; it is detected that the vanadium removal rate is 95.24%, and the tungsten loss rate is 0.67%.
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