A kind of magnetic mgo nano flower phosphate adsorbent and its preparation method and application
A flower phosphate and adsorbent technology, applied in the field of magnetic MgO nanoflower phosphate adsorbent and its preparation, can solve the problems of narrow pH adaptation range, slow adsorption rate, poor selectivity, etc., and achieve recycling and high adsorption selection. The effect of fast phosphorus adsorption rate
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[0032] The invention provides a method for preparing a magnetic MgO nano flower phosphate adsorbent, comprising the following steps:
[0033] mixing polyvinylpyrrolidone, ethylene glycol, ammonia water, magnesium acetate and cobalt acetate, subjecting the obtained mixed solution to solvothermal reaction, and obtaining a solid product after separation;
[0034] Calcining the solid product to obtain a magnetic MgO nano flower phosphate adsorbent;
[0035] The calcination temperature is 600-900°C.
[0036] In the present invention, unless otherwise specified, the raw materials used are commercially available products well known in the art.
[0037] The invention mixes polyvinylpyrrolidone, ethylene glycol, ammonia water, magnesium acetate and cobalt acetate to obtain a mixed solution.
[0038] In the present invention, the mixing process preferably includes: dissolving polyvinylpyrrolidone in ethylene glycol, then adding ammonia water dropwise, then adding magnesium acetate and...
Embodiment 1
[0053] Dissolve 0.8g of PVP (polyvinylpyrrolidone) in 80mL of EG (ethylene glycol), and drop into 400μL of ammonia water; then dissolve 2.68mmol of magnesium acetate and 1.68mmol of cobalt acetate in the above mixed solution, and stir gently for 30min after completely dissolving After the stirring is completed, put the mixed solution into a polytetrafluoroethylene liner, heat it in a 200°C reactor for 24 hours to carry out solvothermal reaction; after the solvothermal reaction is completed, centrifuge the above solution, and wash the obtained precipitate with ethanol for 3 After drying for 12 hours in a vacuum drying oven; after drying, put the sample into a muffle furnace and calcinate at 600°C (temperature rise program 1°C / min) under nitrogen protection to obtain a magnetic MgO nano-flower phosphate adsorbent, which is denoted as NFMgCo-600.
Embodiment 2
[0055] The difference from Example 1 is that the calcination temperature is 800°C, which is recorded as NFMgCo-800.
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