Method for preparing battery-stage monohydrate lithium hydroxide
A lithium hydroxide monohydrate, battery-grade technology, applied in lithium oxide;/hydroxide, battery electrodes, circuits, etc., can solve the problems of immature lithium hydroxide technology, complex process flow, serious equipment corrosion, etc. Achieve the effect of easy operation, high lithium recovery rate and low equipment investment
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Embodiment 1
[0063] see figure 1 , Example 1 of the present invention battery-grade LiOH·H 2 The preparation method of O comprises the following steps:
[0064] (1) Take 12,280ml of purified solution, add 982g of sodium hydroxide, stir well to dissolve it completely, then cool it to -8°C while stirring, when the Na in the solution + When the concentration is 10g / l, it is separated by filtration to obtain Na 2 SO 4 10H 2 O solid and LiOH slurry;
[0065] (2), when the LiOH liquid obtained in step (1) is evaporated to a liquid-solid ratio of about 1:1, when cooled to 35° C., it is filtered and centrifuged, and 285 ml of deionized water is added for rinsing to obtain 424 g LiOH. h 2 O one crude product;
[0066] (3), LiOH·H obtained in step (2) 2 Add 3,365ml deionized water to the primary crude product, stir to make it dissolve completely, and obtain LiOH·H 2 O primary heavy solution of crude product;
[0067] (4), LiOH·H obtained in step (3) 2 O once crude product heavy solution, ...
Embodiment 2
[0072] see figure 1 , Example 2 of the present invention battery-grade LiOH·H 2 The preparation method of O comprises the following steps:
[0073] (1) Take 12280ml of purified solution, add 803g of sodium hydroxide, stir fully to dissolve it completely, then cool it to -2°C while stirring, when Na in the solution + When the concentration is 20g / l, it is separated by filtration to obtain Na 2 SO 4 10H 2 O solid and LiOH slurry;
[0074] (2), when the LiOH liquid obtained in step (1) is evaporated to a liquid-solid ratio of about 1:1, when cooled to 45° C., it is filtered and centrifuged, and 280 ml of deionized water is added for rinsing to obtain 416 g LiOH. h 2 O one crude product;
[0075] (3), LiOH·H obtained in step (2) 2 Add 2,701ml of deionized water to the primary crude product, stir to make it dissolve completely, and obtain LiOH·H 2 O primary heavy solution of crude product;
[0076] (4), LiOH·H obtained in step (3) 2 O once crude product heavy solution, a...
Embodiment 3
[0080] see figure 1 , Example 3 of the present invention battery-grade LiOH·H 2 The preparation method of O comprises the following steps:
[0081] (1) Take 12,280ml of the purified solution, add 884g of sodium hydroxide, stir well to dissolve it completely, then cool it to -5°C while stirring, when Na in the solution + When the concentration is 16g / l, it is separated by filtration to obtain Na 2 SO 4 10H 2 O solid and LiOH slurry;
[0082] (2), when the LiOH liquid obtained in step (1) is evaporated to a liquid-solid ratio of about 1: 1, when cooled to 41° C., it is filtered and centrifuged, and 270 ml of deionized water is added for rinsing to obtain 421 g LiOH. h 2 O one crude product;
[0083] (3), LiOH·H obtained in step (2) 2 Add 3,007ml deionized water to the primary crude product, stir to make it dissolve completely, and obtain LiOH·H 2 O primary heavy solution of crude product;
[0084] (4), LiOH·H obtained in step (3) 2 O once crude product heavy solution,...
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