Method for preparing multifunctional nano silver solution
A nano-silver, multi-functional technology, applied in the field of nano-silver solution preparation, can solve the problems of affecting the ecological environment, difficult to control the production process, and increase the cost, and achieve the effects of increasing permeability, excellent water absorption, and excellent wettability
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Embodiment example 1
[0013] Dissolve 6 g of silver nitrate in 500 ml of deionized water, add 5% ammonia water dropwise until the precipitate disappears to form a complex solution, the concentration of silver nitrate in the obtained complex solution A is about 0.07 mol / l, and the concentration of ammonia is 0.6 mol / l. Add 5 g of tourmaline powder with a particle size of 1 to 2 μm into 200 ml of deionized water to obtain a suspension, and let it stand for 24 hours. Get supernatant, add 17g sodium dodecylbenzene sulfonate and fully stir to obtain component B, wherein the weight ratio of tourmaline particles, deionized water and sodium dodecylbenzenesulfonate is 5: 10: 13. Add complex solution A to solution B, the volume ratio of solution B to solution A is 1:2, and stir at 30° C. for 3 h to obtain a suspension. Add 0.1g of citric acid, the concentration of citric acid is 0.07mol / l, heat up to 90°C, keep the temperature for 3h to obtain nano-silver sol component C, at this time the silver ammonium ion...
Embodiment example 2
[0015] 9 g of silver nitrate was dissolved in 500 ml of deionized water, and 7.5% ammonia water was added dropwise until the precipitate disappeared to form a complex solution. The concentration of silver nitrate in the obtained complex solution A was about 0.1 mol / l, and the concentration of ammonia was 0.8 mol / l. Add 7 g of tourmaline powder with a particle size of 1 to 2 μm to 150 ml of triethanolamine to obtain a suspension, and let it stand for 18 hours. Take the supernatant, add 9g of sodium dodecylsulfate and fully stir to obtain component B, wherein the weight ratio of tourmaline particles, triethanolamine and sodium dodecylbenzenesulfonate is 7:6:11. Add complex solution A to solution B, the volume ratio of solution B to solution A is 1:4, and stir at 45° C. for 6 h to obtain a suspension. Add 0.2g sodium citrate, the concentration of sodium citrate is 0.16mol / l, heat up to 75°C, keep the temperature for 2h to obtain nano silver sol component C, at this time modify th...
Embodiment example 3
[0017] Dissolve 12 g of silver nitrate in 500 ml of deionized water, add dropwise 20% ammonia water until the precipitate disappears and become a complex solution. The concentration of silver nitrate in complex solution A is about 0.2 mol / l, and the concentration of ammonia is 0.95 mol / l. Add 9 g of tourmaline powder with a particle size of 0.2 to 1 μm into 150 ml of Tween to obtain a suspension and let it stand for 24 hours. Take the supernatant, add 6g sodium dodecyl sulfate and stir well to obtain component B, wherein the weight ratio of tourmaline particles, Tween and sodium lauryl sulfate is 7:7:10. Add complex solution A to solution B, the volume ratio of solution B to solution A is 1:6, and stir at 20° C. for 4 h to obtain a suspension. Add 0.15 g of potassium borohydride, the concentration of potassium borohydride is 0.56 mol / l, raise the temperature to 70° C., and keep the temperature for 2 hours to obtain nano-silver sol component C. At this time, modify the silver a...
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