Method for preparing battery grade lithium hydroxide monohydrate
A technology of monohydrate lithium hydroxide and lithium hydroxide, applied in the direction of lithium oxide;/hydroxide, etc., can solve the problem of cumbersome process, etc., and achieve the effect of rich sources, improved electrolysis current efficiency, and fewer types
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Embodiment 1
[0045] (1) The purity of crude lithium carbonate is calculated as 90%. Weigh 840g of crude lithium carbonate and add 1L of deionized water to stir. Slowly add 1030g of sulfuric acid with an excess coefficient of about 1.05 into the crude lithium carbonate slurry;
[0046] (2) After metathesis, the solution is filtered with NaOH and sodium carbonate solution to adjust the pH to 9, and the filtrate is obtained with a nanofiltration membrane to obtain a preliminary impurity-removed liquid;
[0047] (3) After preliminary impurity removal, the liquid is deeply purified through a chelating resin column;
[0048] (4) After deep purification, the liquid is concentrated by evaporation and crystallization. The components of the concentrated liquid are: Li content 11.5g / L, Ca 2+ The content is 0.28mg / L, Mg 2+ The content is 0.36mg / L, Ni 2+ The content is 0.26mg / L, Na + 8.5g / L, SO 4 2- 97.3g / L;
[0049] (5) Pump the concentrated liquid into the ion membrane electrolysis system, and ...
Embodiment 2
[0053] (1) The purity of crude lithium carbonate is calculated as 90%. Weigh 1250g of crude lithium carbonate and add 1L of deionized water to stir. Slowly add 1540g of sulfuric acid with an excess coefficient of about 1.05 into the crude lithium carbonate slurry;
[0054] (2) After metathesis, the solution is filtered with LiOH and sodium carbonate solution to adjust the pH to 9.5, and the filtrate is obtained after preliminary removal of impurities with a nanofiltration membrane;
[0055] (3) After preliminary impurity removal, the liquid is deeply purified through a chelating resin column;
[0056] (4) After deep purification, the liquid is concentrated by evaporation and crystallization. The components of the concentrated liquid are: Li content 13.4g / L, Ca 2+ The content is 0.36mg / L, Mg 2+ The content is 0.27mg / L, Ni 2+ The content is 0.19mg / L, Na + 7.3g / L, SO 4 2- 107.5g / L;
[0057] (5) Pump the concentrated liquid into the ion membrane electrolysis system, and pump...
Embodiment 3
[0061] (1) The purity of crude lithium carbonate is 90%. Weigh 2380g of crude lithium carbonate and add 1L of deionized water to stir. Slowly add 2930g of sulfuric acid with an excess coefficient of about 1.05 into the crude lithium carbonate slurry.
[0062] (2) The solution after metathesis is adjusted to pH 9.5 with LiOH and sodium carbonate solution, and then filtered, and the filtrate is obtained after preliminary removal of impurities with a nanofiltration membrane.
[0063] (3) After preliminary impurity removal, the liquid is deeply purified through a chelating resin column.
[0064] (4) After deep purification, the liquid is concentrated by evaporation and crystallization. The components of the concentrated liquid are: Li content 14.5g / L, Ca 2+ The content is 0.41mg / L, Mg 2+ The content is 0.32mg / L, Ni 2+ The content is 0.36mg / L, Na + 9.1g / L, SO 4 2- It is 119.6g / L.
[0065] (5) Pump the concentrated liquid into the ion membrane electrolysis system, and pump Li ...
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