Magnetic bionic adsorbent and application of magnetic bionic adsorbent in treating acid wastewater containing uranium
An adsorbent and magnetic technology, applied in the field of magnetic biomimetic adsorbent and its application in the treatment of acidic uranium-containing wastewater, can solve the problems of large organic solvent consumption, long preparation cycle of magnetic uranium adsorbent, secondary pollution cost, etc. , to achieve the effect of good hydrophilicity, simple and novel preparation process, and strong adsorption capacity
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Embodiment 1
[0028] Embodiment 1: A kind of rapid synthesis method of magnetic biomimetic adsorbent
[0029] (1) Add 1.00g PSSMA to 40mL of ethylene glycol, heat and stir until dissolved; add 1.08g ferric chloride hexahydrate and 3.00g anhydrous sodium acetate in sequence at room temperature, continue stirring and dissolving for 1h, then transfer to 200mL In the tetrafluoroethylene reaction kettle, heated at 200 ° C for 10 h, took out the reaction kettle, cooled overnight, and poured out the prepared Fe from the kettle. 3 O 4 The microspheres were washed alternately with ethanol and deionized water for 4 to 5 times, and dried in vacuum at 35 °C for 12 h to obtain Fe 3 O 4 magnetic nanoparticles;
[0030] (2) prepare a tris(hydroxymethyl)aminomethane buffer solution, the solvent is an ethanol / water mixed solution with a volume ratio of 1:1, and adjust pH=8.5 with a 0.5mol / L hydrochloric acid solution; at 25°C, step (1) Fe produced in 3 O 40.1 g of magnetic nanoparticles was dispersed ...
Embodiment 2
[0033] Example 2: Application of Magnetic Biomimetic Adsorbent in Treatment of Acidic Uranium-Containing Wastewater
[0034] Pipette 25mL of uranium solution with a concentration of 100mg / L into a conical flask, use 1mol / LHNO 3 Or 1 mol / L NaOH solution to adjust its pH to 3.0, add 0.05 g of the magnetic biomimetic adsorbent obtained in Example 1, ultrasonicate for 10 min, and shake at 240 r / min for 72 h in a constant temperature air bath at 25 ± 0.2 °C. After separating the adsorbent with a magnet, take out the supernatant sample, add 1 mol / L tartaric acid buffer solution, hydroxylamine hydrochloride-urea solution and arsenic azo III indicator to the water sample to be tested in turn and make up the volume, and determine by spectrophotometry According to the mass concentration of uranium in the solution, the removal rate of uranium by the adsorbent was calculated according to the adsorption equilibrium formula E=8.1%.
Embodiment 3
[0035] Example 3: Application of Magnetic Biomimetic Adsorbent in Treatment of Acidic Uranium-Containing Wastewater
[0036] Pipette 25mL of uranium solution with a concentration of 100mg / L into a conical flask, use 1mol / LHNO 3 Or 1 mol / L NaOH solution to adjust its pH to 3.5, add 0.05 g of the magnetic biomimetic adsorbent obtained in Example 1, ultrasonicate for 10 min, and shake at 240 r / min for 72 h in a constant temperature air bath at 25 ± 0.2 °C. After separating the adsorbent with a magnet, take out the supernatant sample, add 1 mol / L tartaric acid buffer solution, hydroxylamine hydrochloride-urea solution and arsenic azo III indicator to the water sample to be tested in turn and make up the volume, and determine by spectrophotometry According to the mass concentration of uranium in the solution, the removal rate of uranium by the adsorbent was calculated according to the adsorption equilibrium formula E=22.3%.
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