Lithium carbonate crystal separating process from carbonate-type bittern by means of solar battery
A technology of crystallization and carbonate type, applied in the direction of lithium carbonate;/acid carbonate, solution crystallization, etc., can solve the problems of poor heat storage capacity, increased production cost, time-consuming and labor-intensive salt collection, etc. Achieve the effect of improving production efficiency
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Embodiment 1
[0024] Sun Pool lighting area 1936 meters 2 , The slope ratio is 1:1, the inner wall of the pool is covered with black geomembrane as a liner, and the bottom of the pool is made of magnesite as a heat insulation layer.
[0025] Using high-lithium and high-carbonate brine in the salt lake as a raw material, it is concentrated to obtain Li + The lithium-rich brine with a concentration of 2.64g / l controls the depth of the lithium-rich brine in the solar pond to about 2.5m; pour clean fresh water about 50cm on the brine layer, and the total depth of the brine and freshwater layer in the solar pond is about 3m. The operation time was from March 19 to May 4, 2002. After 40 days of absorbing solar heat storage, the temperature in the solar pool energy storage area reached about 31.5℃, and the pool was enriched with high lithium mixed salt with a thickness of about 3mm, and crystallized The grade of lithium carbonate in the mixed salt is 83.1%. During the lithium sinking period, according...
Embodiment 2
[0027] Sun Pool lighting area 1936 meters 2 , The slope ratio is 1:1, the inner wall of the pool is covered with black geomembrane as a liner, and the bottom of the pool is made of magnesite as a heat insulation layer.
[0028] Using high-lithium and high-carbonate brine in the salt lake as a raw material, it is concentrated to obtain Li + The lithium-rich brine with a concentration of 1.8g / l controls the depth of the lithium-rich brine in the solar pond to about 1.69m; pour clean fresh water about 40cm on the brine layer, and the total depth of the brine and freshwater layer in the solar pond is about 2.09m . The operation time was from May 17th to June 9th, 2002. After 23 days of absorbing solar heat storage, the temperature of the solar pool energy storage area reached about 40℃, and the pool was enriched with high-lithium mixed salt with a thickness of about 3mm. The grade of lithium carbonate in the mixed salt is 81.6%. During the lithium sinking period, according to the evap...
Embodiment 3
[0030] Sun Pool lighting area 1936 meters 2 , The slope ratio is 1:1, the inner wall of the pool is covered with black geomembrane as a liner, and the bottom of the pool is made of foamed plastic as an insulation layer.
[0031] Using high-lithium and high-carbonate brine in the salt lake as a raw material, it is concentrated to obtain Li + Lithium-rich brine with a concentration of 1.59g / l, control the depth of lithium-rich brine in the solar pond to about 1.5m; pour clean fresh water about 30cm on the brine layer, and the total depth of the brine and freshwater layer in the solar pond is about 1.8m . The operation time was from June 4th to June 30th, 2002. After 26 days of absorbing solar heat storage, the temperature of the solar pool energy storage area reached about 47℃, and the pool was enriched with high lithium mixed salt with a thickness of about 3mm. The lithium carbonate grade of the mixed salt is 82.8%. During the lithium sinking period, according to the evaporation si...
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