Method for preparing high-purity anhydrous sodium carbonate by using membrane method
A technology of anhydrous sodium carbonate and industrial sodium carbonate, applied in the direction of alkali metal carbonate to change crystal water content, etc., can solve the problem of poor alkali resistance of cellulose acetate microporous filtration membrane, poor economic benefit of industrial production, and sodium carbonate concentration. Low and other problems, to overcome the inability of continuous production, easy operation, and good filtration effect
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Embodiment 1
[0018] (1) 20kg of industrial sodium carbonate is dissolved in 55 DEG C of distilled water to make a solution with a sodium carbonate mass content of about 28%, heated and stirred for 1 hour, so that calcium ions are fully precipitated;
[0019] (2) Add 20 g of sodium hydroxide to the solution and stir at 55° C. for 1 hour to fully precipitate the magnesium ions in the solution until the magnesium ion content in the solution is lower than 5 ppm;
[0020] (3) Filtrate with a ceramic membrane to obtain a refined solution heated and evaporated, and the crystal slurry liquid is sent to a centrifuge, and deionized water is added to the centrifuge to wash the filter cake until there is no chloride ion in the filter cake, and dried at 110°C to obtain a high Pure Sodium Carbonate.
[0021] After testing: the calcium content in the sodium carbonate obtained by using the method is lower than 1ppm, the magnesium content is lower than 1ppm, the SS is lower than 1ppm, and the chlorine cont...
Embodiment 2
[0023] (1) 50kg of anhydrous sodium carbonate is dissolved in 65 DEG C of distilled water to prepare a solution with a mass content of sodium carbonate of about 30%, heated and stirred for 1 hour, so that calcium ions are fully precipitated;
[0024] (2) Add 50 g of sodium hydroxide to the solution, stir at 65° C. for 1 hour to fully precipitate the magnesium ions in the solution until the magnesium ion content in the solution is lower than 5 ppm;
[0025] (3) Filtrate with a ceramic membrane to obtain a refined solution heated and evaporated, and the crystal slurry liquid is sent to a centrifuge, and deionized water is added to the centrifuge to wash the filter cake until there is no chloride ion in the filter cake, and dried at 110°C to obtain a high Pure Sodium Carbonate.
[0026] After testing: the calcium content in the sodium carbonate obtained by using the method is lower than 1ppm, the magnesium content is lower than 1ppm, the SS≤1ppm, and the chlorine content is lower...
Embodiment 3
[0028] (1) 50kg of anhydrous sodium carbonate is dissolved in 60 DEG C of distilled water to prepare a solution with a mass content of sodium carbonate of about 30%, heated and stirred for 1 hour, so that calcium ions are fully precipitated;
[0029] (2) Add 50 g of sodium hydroxide to the solution, stir at 60° C. for 1 hour to fully precipitate the magnesium ions in the solution until the magnesium ion content in the solution is lower than 5 ppm;
[0030] (3) Filtrate with a ceramic membrane to obtain a refined solution heated and evaporated, and the crystal slurry liquid is sent to a centrifuge, and deionized water is added to the centrifuge to wash the filter cake until there is no chloride ion in the filter cake, and dried at 110°C to obtain a high Pure Sodium Carbonate.
[0031] After testing: the calcium content in the sodium carbonate obtained by the method is lower than 1ppm, the magnesium content is lower than 1ppm, the SS≤1ppm, and the chlorine content are lower than...
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