Method for removing sulfate radicals in cobalt hydroxide
A cobaltous hydroxide and sulfate technology, applied in the direction of cobalt oxide/cobalt hydroxide, can solve the problems of shortening battery cycle life, reducing catalytic performance, affecting electrical conductivity, etc., achieving good sulfate removal effect and simple and easy process. The effect of line and operation is convenient
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Embodiment 1
[0016] Remove sulfate radical in cobaltous hydroxide, its concrete steps are as follows:
[0017] a. Transfer the cobaltous hydroxide suspension generated by the reaction to a stirred reactor, let it stand for clarification, and discharge the supernatant;
[0018] b With a liquid-solid ratio volume ratio of 1:1, add an aqueous sodium hydroxide solution with a mass concentration of 1% to the reaction kettle, start stirring, and after stirring for 40 minutes, let it stand for clarification, and discharge the aqueous sodium hydroxide solution;
[0019] c After discharging the aqueous sodium hydroxide solution, pour deionized water into the reactor at a solid-to-liquid volume ratio of 1:1.5, and circulate and wash until the washing liquid pH=8, and maintain the temperature of the reactor at 50°C±5°C during the whole process;
[0020] d Finally, it was filtered and dried, and the sulfate content in the cobaltous oxide product was analyzed to be 0.2%, and the cobaltous hydroxide was...
Embodiment 2
[0022] Go out sulfate radical in cobaltous hydroxide, its concrete steps are as follows:
[0023] a. Transfer the cobaltous hydroxide suspension generated by the reaction to a stirred reactor, let it stand for clarification, and discharge the supernatant;
[0024] b With a liquid-solid ratio volume ratio of 1:2, add an aqueous sodium hydroxide solution with a mass concentration of 3% to the reactor, start stirring, and after stirring for 50 minutes, let it stand for clarification, and discharge the aqueous sodium hydroxide solution;
[0025] c After discharging the aqueous sodium hydroxide solution, pour deionized water into the reactor at a solid-to-liquid volume ratio of 1:3, and circulate and wash until the washing liquid pH=9.5, and maintain the temperature of the reactor at 50°C±5°C during the whole process;
[0026] d Finally, it was filtered and dried, and the sulfate content in the cobaltous oxide product was analyzed to be 0.13%, and the cobaltous hydroxide was calcin...
Embodiment 3
[0028] Go out sulfate radical in cobaltous hydroxide, its concrete steps are as follows:
[0029] a. Transfer the cobaltous hydroxide suspension generated by the reaction to a stirred reactor, let it stand for clarification, and discharge the supernatant;
[0030] b With a liquid-solid ratio volume ratio of 1:3, add an aqueous sodium hydroxide solution with a mass concentration of 5% to the reactor, start stirring, and after stirring for 60 minutes, let it stand for clarification, and discharge the aqueous sodium hydroxide solution;
[0031] c After discharging the aqueous sodium hydroxide solution, pour deionized water into the reactor at a solid-to-liquid volume ratio of 1:5, and circulate and wash until the pH of the washing solution is 10, and maintain the temperature of the reactor at 50°C±5°C throughout the process;
[0032] d Finally, filter and dry, the sulfate content in the cobaltous hydroxide product is 0.1%, and calcining the cobaltous hydroxide to obtain a sulfate...
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