Magnesium hydroxide microparticles, magnexium oxide microparticles, and method for producing each
A technology of magnesium hydroxide and fine particles, applied in the direction of magnesium hydroxide, magnesium oxide, etc., can solve the problems of not being able to obtain fine particles with uniform particle size and difficult to control particle size, and achieve high availability, small particle size, and particle size uniform effect
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Embodiment 1
[0087] As the crude magnesium chloride aqueous solution, a magnesium chloride aqueous solution having a purity of 90% by mass or higher and a concentration of 3.5 mol / L was prepared. The concentration was adjusted by adding pure water (passed through an ion exchange resin to purify to a conductivity of 0.1 μS / cm or less) to this magnesium chloride aqueous solution to obtain a crude magnesium chloride aqueous solution with a concentration of 2.0 mol / L.
[0088] Then, in the crude magnesium chloride aqueous solution with a concentration of 2.0mol / L, add a sodium hydroxide aqueous solution with a concentration of 17.84mol / L to make them react according to a conversion rate of 20mol%, and then add 500 mass ppm of magnesium hydroxide with respect to the generated magnesium hydroxide. An acrylamide-sodium acrylate copolymer as a flocculant was used to coagulate and precipitate magnesium hydroxide, and the supernatant was collected to obtain an aqueous magnesium chloride solution.
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Embodiment 2
[0093] In the reaction of the magnesium chloride aqueous solution and the sodium hydroxide aqueous solution, the conversion rate was 120 mol%, and the hydrothermal treatment time was 0.5 hour, and it carried out similarly to Example 1.
Embodiment 3
[0095] In the reaction of the magnesium chloride aqueous solution and the sodium hydroxide aqueous solution, the conversion rate was 105 mol%, and the hydrothermal treatment time was 3 hours, and it carried out similarly to Example 1.
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