Method for preparing metal ion imprinting adsorbent with underwater selective recognition performance
A technology of metal ion imprinting and recognition performance, which is applied in chemical instruments and methods, adsorption water/sewage treatment, water/sewage treatment, etc., can solve the problem of unsatisfactory selective separation of template metal ions, difficulty in recognition of template metal ions, synthesis process complex and other issues, achieve good physical, chemical and mechanical stability, improve selective recognition performance, and simple preparation process
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Embodiment 1
[0026]Weigh 1.2g of silica particles and disperse them in 20mL of methanol, add 20mL of 3-propylaminoethoxysilane, 3mL of tetraethyl orthosilicate, and 10mL of 0.1mol / L acetic acid in sequence, and stir mechanically for 12 hours to prepare Amino-functionalized silica particles were obtained. Disperse 1.0 g of amino-functionalized silica particles uniformly in 20 mL of methanol solution, add a mixed solution of 3 mmol of isonicotinic acid and 0.8 mmol of sodium molybdate to it, stir mechanically for 18 h, and wash the obtained product three times with distilled water , dried after centrifugation. Take methanol-acetic acid solution with a volume ratio of 1:9 to elute the dried product for 1 h, and then use 100 mL of 1 mol / L hydrochloric acid solution to continue to elute the imprinted template for 3 h under the action of magnetic stirring. After drying, the molybdenum ion imprinting adsorbent is obtained.
[0027] Weigh 0.1mol sodium molybdate and dissolve it in 100mL water to...
Embodiment 2
[0030] Disperse 0.8g of ferric oxide particles, 3mL of oleic acid, and 1.5g of sodium lauryl sulfate in a mixture of 100mL of ethanol and water, add 5mL of APTES to the solution, and age at a constant temperature of 60°C for 2h. The solution was taken out and placed under a permanent magnet, washed three times with absolute ethanol and three times with distilled water, and put the amino-functionalized ferroferric oxide magnetic particles into a constant temperature drying oven, and dried at 80°C for 10 hours. Uniformly disperse the amino-functionalized ferroferric oxide magnetic particles in 20 mL of methanol solution, add 0.2 mmol of isonicotinic acid and 0.3 mmol of sodium molybdate mixed solution, mechanically stir for 18 hours, and wash the obtained imprinted adsorbent with distilled water 3 times, centrifuged and dried. Take methanol-acetic acid solution with a volume ratio of 1:9 to elute the dried imprinted adsorbent for 14 h, and then continue to elute the imprinted te...
Embodiment 3
[0034] Take 0.6g of silica particles and disperse them in 20mL of methanol, add 4mL of 3-propylaminoethoxysilane, 6mL of tetraethyl orthosilicate, and 1.5mL of 0.1mol / L acetic acid in sequence, and stir mechanically for 12h to prepare Amino-functionalized silica particles were obtained. Disperse the amino-functionalized silica particles evenly in 20 mL of methanol solution, add 2 mmol of isonicotinic acid and 0.3 mmol of zirconium oxychloride mixed solution, stir mechanically for 18 h, and wash the obtained imprinted adsorbent with distilled water for 3 times , dried after centrifugation. Take methanol-acetic acid solution with a volume ratio of 1:8 to elute the dried imprinted adsorbent for 14 h, and then continue to elute the imprinted template with 100 mL of 0.1 mol / L hydrochloric acid solution for 3 h under the action of magnetic stirring. After drying, the zirconium ion imprinted adsorbent is obtained.
[0035] Weigh 0.1 mol of zirconium nitrate and dissolve it in 100 m...
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