Silver-based composite adsorbent for removing radioactive iodine as well as preparation method and application of silver-based composite adsorbent
A compound technology of radioactive iodine and silver, which is applied in the direction of radioactive purification, radioactive pollutants, chemical instruments and methods, etc., can solve the problems of high mobility, human metabolic disorder, and increased risk of thyroid cancer, and achieve high efficiency and preparation The process is simple and the effect of improving chemical stability
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[0031] Such as image 3 Shown, a kind of preparation method for removing the silver-based composite adsorbent of radioactive iodine, comprises following process:
[0032] S101: Preparation of silver nanoparticle suspension by hydrothermal method
[0033] Under stirring at room temperature, add sodium borohydride solution dropwise to silver nitrate solution to obtain a mixed solution, the color of the mixed solution gradually transitions from light yellow to dark gray, and then heat the mixed solution to 75°C for 2 hours to decompose the mixed solution excess sodium borohydride and cooled to room temperature to obtain a silver nanoparticle suspension.
[0034] In this embodiment, the volume ratio of the sodium borohydride solution and the silver nitrate solution is 1:1.
[0035] In this embodiment, the concentration of the sodium borohydride solution is 4 mmol / L, and the concentration of the silver nitrate solution is 1 mmol / L.
[0036] S102: Preparation of silver-based comp...
Embodiment 1
[0041] Under normal temperature stirring, 50mL of 4mmol / L sodium borohydride solution was added dropwise to 50mL of 1mmol / L silver nitrate solution to obtain a mixed solution, the color of the mixed solution gradually changed from light yellow to dark gray, and then the mixed solution was heated to 75° C., holding time for 2 hours to decompose excess sodium borohydride in the mixed solution, and cooling to room temperature to obtain a silver nanoparticle suspension. Dissolve 2g of polyvinylpyrrolidone in 100mL of the above-mentioned silver nanoparticle suspension, slowly add 1mL of pyrrole under stirring, continue stirring for 10min, add 1g of silver nitrate and stir until fully dissolved, let it stand for 48h, and treat it after the reaction is completed. The precipitate was washed twice with ultrapure water and ethanol in sequence, and then the washed precipitate was centrifuged at a speed of 5000r / min to obtain an isolate, and finally the isolate was vacuum-dried at room tem...
Embodiment 2
[0043] Under normal temperature stirring, 50mL of 4mmol / L sodium borohydride solution was added dropwise to 50mL of 1mmol / L silver nitrate solution to obtain a mixed solution, the color of the mixed solution gradually changed from light yellow to dark gray, and then the mixed solution was heated to 75° C., holding time for 2 hours to decompose excess sodium borohydride in the mixed solution, and cooling to room temperature to obtain a silver nanoparticle suspension. Dissolve 2.5g of polyvinylpyrrolidone in 100mL of the above-mentioned silver nanoparticle suspension, slowly add 1mL of pyrrole under stirring, continue stirring for 15min, add 1.1g of silver nitrate and stir until fully dissolved, let it stand for 48h, and wait for the reaction to complete Finally, the precipitate was washed twice with ultrapure water and ethanol in sequence, and then the washed precipitate was centrifuged at a speed of 5000r / min to obtain an isolate, and finally the isolate was vacuum-dried at roo...
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