Self-driven catalyst for degrading tetracycline based on photo-Fenton reaction as well as preparation and application of self-driven catalyst
A self-driven, catalyst technology, applied in the direction of physical/chemical process catalysts, chemical instruments and methods, chemical/physical processes, etc., can solve the problems that the catalyst does not have self-driving characteristics, the treatment effect is not particularly ideal, and the catalyst is difficult to penetrate. Achieve green environmental protection and secondary pollution, overcome the limitation of mechanical stirring, and enhance the effect of mixing
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Embodiment 1
[0038] Example 1: CuS@Fe 3 o 4 / Pt self-driven catalyst preparation
[0039] (1) Preparation of CuS microspheres
[0040] 0.2g of CuCl 2 2H 2 O was ultrasonically dissolved in 40mL of ethylene glycol. After complete dissolution, 0.6g of thiourea was slowly added to the above solution. After stirring for 3 hours, the solution was transferred to a reaction kettle and heated to 120°C, kept for 12h, cooled to room temperature, and centrifuged. Dry to obtain lamellar CuS microsphere material;
[0041] (2)CuS@Fe 3 o 4 Preparation of composite materials
[0042] 0.3 g of CuS microspheres were ultrasonically dispersed in 30 mL of deionized water, 0.3 g of sodium citrate, 0.1 g of FeCl 3 ·6H 2 After O and 0.01g of urea are dissolved in the dispersion, slowly add 0.06g of sodium polyacrylate into the above dispersion, and stir continuously for 3h, then transfer the mixture to a reaction kettle, heat to 200°C, and keep it warm for 4h. Centrifuge, wash, and dry to obtain CuS@Fe ...
Embodiment 2
[0049] Example 2: CuS@Fe 3 o 4 / Pt self-driven catalyst preparation
[0050] The only difference between embodiment 2 and embodiment 1 is that in step (1) CuCl 2 2H 2 The quality of O is 0.4g, and the heating and holding time is 14h, and the other steps are all the same as in Example 1.
Embodiment 3
[0051] Example 3: CuS@Fe 3 o 4 / Pt self-driven catalyst preparation
[0052] The only difference between Example 3 and Example 1 is that the mass of CuS microspheres in step (2) is 0.6 g, and the heating and holding time is 2 h, and the other steps are the same as in Example 1.
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