Method for removing metallic impurities in boric acid by complex crystallizing method
A metal impurity and crystallization technology, applied in the direction of boron oxides, etc., can solve the problems of high cost, complex equipment, and harsh process requirements, and achieve the effects of remarkable product performance, no environmental pollution, and simple and easy-to-control processes
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Embodiment 1
[0012] Example 1: Take 1000g of industrial boric acid, add distilled water to dissolve, stir, heat to 90°C, add 2-5g of acidic oxidative additive, react for about 20 minutes, add 5-8 grams of complexing agent (organic alkali metal salt) , reacted at 90°C for 3 hours, filtered the obtained solution, cooled it at 70-80°C for a second time, continued to cool and recrystallize, separated the obtained crystal from the mother liquor, and dried the crystal at 90°C in vacuum to obtain a high-purity boric acid sample with a product purity of 99.99% %, where the impurity content is: Fe 0.00034%, Ca0.00089%, Co 0.00008%, Cu 0.00026%, Ni 0.00005%, Cr 0.00008%, Ti 0.00002%.
Embodiment 2
[0013] Embodiment 2: Get 1000g of industrial boric acid, add distilled water to dissolve, stir, heat to 90°C, add 10-15g of oxidizing auxiliary agent, react for about 60 minutes, add complexing agent (ammonia or C 4 The following monohydric alcohol amine) 10 ~ 20 grams, heated to 100 ° C, reacted for about 8 hours, obtained solution filtered, cooled to about 80 ° C for secondary filtration, continued cooling and recrystallization, separated the obtained crystal from the mother liquor, and vacuumed the crystal at 100 ° C Dry to obtain a high-purity boric acid sample, the product purity is 99.99%, and the impurity content is: Fe 0.00058%, Ca 0.00096%, Co 0.00006%, Cu 0.00023%, Ni 0.00008%, Cr 0.00006%, Ti 0.00008%.
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