Purification method of lithium difluorophosphate
A lithium difluorophosphate and purification method technology, which is applied in the field of lithium difluorophosphate purification, can solve the problems of high energy consumption, inability to effectively reduce product acidity, inability to remove acidic substances such as hydrofluoric acid, etc., and achieve low energy consumption Effect
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Embodiment 1
[0044] Add 200g of ethanol and 21.6g (0.2mol) of crude lithium difluorophosphate (purity 98.1%, acidity 300ppm) into a 500mL reaction flask, and stir to dissolve. Put 1.0 g of lithium hydroxide into the bottle, blow dry nitrogen, and stir at 60° C. for 3 h. Insoluble materials were removed by filtration.
[0045] The treated solution was transferred and concentrated by evaporation under reduced pressure until the remaining 60 g of the solution was stopped, and 120 g of dichloromethane was added thereto, and stirred for 2 hours to crystallize. The obtained crystal weighed 19.5 g after vacuum drying to obtain a pure product. The yield of the purification method provided by Example 1 of the present invention is 90.3%, the acidity (HF) content in the pure product is 51ppm, and the purity is 99.95%. The purity was determined by ion chromatography, and the acidity was measured by titration.
Embodiment 2
[0047] Add 200g of acetone and 21.6g (0.2mol) of crude lithium difluorophosphate (purity 98.1%, acidity 300ppm) into a 500mL reaction flask, and stir to dissolve. Put 1.0 g of lithium oxide into the bottle, blow dry nitrogen, and stir at 50° C. for 2 h. Insoluble materials were removed by filtration.
[0048] The treated solution was transferred and concentrated by evaporation under reduced pressure until the remaining 80 g of the solution was stopped, 120 g of hexane was added thereto, and stirred for 3 hours to crystallize. The obtained crystal weighed 18.1 g after vacuum drying to obtain a pure product. The yield of the purification method provided by Example 2 of the present invention is 83.8%, the acidity (HF) content in the pure product is 43ppm, and the purity is 99.92%. The detection method of purity and acidity is with embodiment 1.
Embodiment 3
[0050] Add 150g of ethylene glycol dimethyl ether and 21.6g (0.2mol) of crude lithium difluorophosphate (purity 95.6%, acidity 1000ppm) into a 500mL reaction flask, and stir to dissolve. Put 2.0 g of lithium carbonate into the bottle, blow dry nitrogen, and stir at 80° C. for 4 h. Insoluble materials were removed by filtration.
[0051] The treated solution was transferred and concentrated by evaporation under reduced pressure until the remaining 60 g of the solution was stopped, 60 g of toluene was added thereto, and stirred for 3 hours to crystallize. The obtained crystal weighed 19.6g after vacuum drying to obtain a pure product. The yield of the purification method provided by Example 3 of the present invention is 90.7%, the acidity (HF) content in the pure product is 25ppm, and the purity is 99.98%. The detection method of purity and acidity is with embodiment 1.
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