A kind of preparation method of ferric oxide/silicon dioxide composite powder with shell-core structure
A technology of triiron tetroxide and silicon dioxide, which is applied in the direction of iron oxide/iron hydroxide, ferrous oxide, inorganic material magnetism, etc., can solve the problem of high price, low grafting rate, poor thermal stability, etc. problems, to achieve the effect of increasing added value, expanding application fields, and improving dispersion capacity
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Embodiment 1
[0021] (1) Dissolve the iron salt in deionized water and stir with a magnetic stirrer until the iron salt is completely dissolved to make Fe 3+ A solution with a concentration of 0.01mol / L;
[0022] (2) Take silica powder and dissolve it in deionized water, add a dispersant to disperse it evenly by ultrasonic to make a slurry with a concentration of 0.01mol / L, then stir it with a strong mixer, and add a small amount of ammonia water to adjust pH in the range of 7;
[0023] (3) Add the solution prepared in step (1) to the fully stirred silica slurry at a speed of 0.02mol / s, and continue to stir vigorously for 40 minutes to obtain the coated silica precipitate;
[0024] (4) The precipitate obtained in step (3) was centrifuged, washed 3 times with deionized water, then washed 1 time with dehydrated ethanol, and finally put into an oven at 80°C to dry to obtain coated ferric hydroxide / Silica composite powder;
[0025] (5) Under the protection of inert gas argon, ferric oxide / ...
Embodiment 2
[0027] (1) Dissolve the iron salt in deionized water and stir with a magnetic stirrer until the iron salt is completely dissolved to make Fe 3+ A solution with a concentration of 0.015mol / L;
[0028] (2) Take silica powder and dissolve it in deionized water, add a dispersant to disperse it uniformly by ultrasonic to make a slurry with a concentration of 0.20mol / L, then stir it with a strong mixer, and add a small amount of ammonia water to adjust pH in the range of 7;
[0029] (3) Add the solution prepared in step (1) to the fully stirred silica slurry at a speed of 0.016mol / s, and continue to stir vigorously for 50 minutes to obtain the coated silica precipitate;
[0030] (4) Centrifuge the precipitate obtained in step (3), wash it with deionized water for 4 times, then wash it with dehydrated ethanol for 2 times, and finally put it in a 90°C oven to dry to obtain the coated ferric hydroxide / Silica composite powder;
[0031] (5) Under the protection of inert gas and nitr...
Embodiment 3
[0033] (1) Dissolve the iron salt in deionized water and stir with a magnetic stirrer until the iron salt is completely dissolved to make Fe 3+ A solution with a concentration of 0.02mol / L;
[0034] (2) Take silica powder and dissolve it in deionized water, add a dispersant to disperse it uniformly by ultrasonic to make a slurry with a concentration of 0.20mol / L, then stir it with a strong mixer, and add a small amount of ammonia water to adjust pH in the range of 8;
[0035] (3) Add the solution prepared in step (1) to the fully stirred silica slurry at a rate of 0.10 mol / s, and continue to stir vigorously for 80 minutes to obtain the coated silica precipitate;
[0036] (4) Centrifuge the precipitate obtained in step (3), wash it with deionized water for 5 times, then wash it with dehydrated ethanol for 2 times, and finally put it in an oven at 100°C to dry to obtain the coated ferric hydroxide / Silica composite powder;
[0037] (5) Under the protection of inert gas argon...
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