Organic composite photocatalyst for degrading drugs and pathogenic bacteria and preparation method thereof
A photocatalyst and composite light technology, applied in organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, chemical instruments and methods, etc., can solve human health hazards, accelerate drug-resistant pathogens, etc. problem, to achieve the effect of removing, improving photocatalytic degradation efficiency, and simple preparation method
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Embodiment 1
[0051] [Example 1] Preparation of loaded photocatalyst CP / DAX-8
[0052] CP / DAX-8 is prepared by stirring cercosporin and macroporous adsorption resin in a solvent: weigh 40 mg of cercosporin, dissolve it in 50 mL of methanol solution, add 1 g of macroporous adsorption resin Resin (Supelite TM DAX-8), after magnetic stirring for 24 hours, the solid composite material was obtained by suction filtration, the solid was washed three times with methanol and ultrapure water, and then the solid material was vacuum-dried at 35°C for 24 hours, and finally the supported photocatalyst CP / DAX was obtained -8.
[0053] For the raw material macroporous adsorption resin Supelite in this implementation TM DAX-8, cercosporin, and the prepared photocatalyst CP / DAX-8 were tested by infrared, figure 1 For the macroporous adsorption resin in the present embodiment, the infrared spectrogram of cercosporin and CP / DAX-8, by figure 1 It can be seen that the infrared spectrum of the synthesized C...
Embodiment 2
[0055] [Example 2] Degradation of Ciprofloxacin
[0056] At room temperature, 40 mg of the catalyst CP / DAX-8 prepared in Example 1 was added to 10 mL of a ciprofloxacin solution having a pH value of 7 and a concentration of 10 mg / L. Stirring in the dark for 30min, then at 15W (14.8mW cm -2 ) and continue stirring for 3 h under fluorescent irradiation. Three parallels were set up in each group, a sample was taken every 30 min, and the remaining amount of ciprofloxacin in the solution was detected by HPLC. The liquid phase conditions are 0.1% phosphoric acid water: acetonitrile = 80:20, the flow rate is 1mL / min, the detection wavelength is 277nm, and the column temperature is 25°C. The test results showed that the degradation rate of ciprofloxacin reached 99.8%.
Embodiment 3
[0057] [Example 3] Degradation of Ciprofloxacin
[0058] At room temperature, 40 mg of the catalyst CP / DAX-8 prepared in Example 1 was added to 10 mL of a ciprofloxacin solution having a pH value of 7 and a concentration of 50 mg / L. Stirring in the dark for 30min, then at 15W (14.8mW cm -2 ) continue to stir for 3h under fluorescent irradiation, take a sample every 30min, and detect the remaining amount of ciprofloxacin in the solution with HPLC, and the detection method is the same as in Example 2. The test results showed that the degradation rate of ciprofloxacin reached 76.7%.
[0059] image 3 It is the degradation effect of ciprofloxacin with different initial concentrations (10mg / L, 20mg / L, 30mg / L, 40mg / L, 50mg / L) under the photocatalysis of CP / DAX-8. Depend on image 3 It can be seen that low concentration of ciprofloxacin is more conducive to improving the removal efficiency of CP / DAX-8.
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