Preparation method of fiber photocatalyst
A photocatalyst and fiber technology, applied in the field of photocatalysis, can solve the problems of complex preparation process, high cost, difficult industrialized production, etc., and achieve the effects of simple preparation process, widening application fields and great application prospects.
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Embodiment 1
[0020] 1) Preparation of mixed solvent: prepare mixed solvent with dimethyl sulfoxide / absolute ethanol in a volume ratio of 85 / 15 (v / v);
[0021] 2) Preparation of nano titanium dioxide dispersion: adding P25 to the mixed solvent prepared in step 1), and after ultrasonic dispersion, a solid content of 0.03 g / L nano titanium dioxide dispersion is obtained;
[0022] 3) Dip coating: the polyacrylonitrile fiber is passed through the nano titanium dioxide dispersion prepared in step 2) at a speed of 0.5m / s, then it is solidified in water, washed and dried; the drying condition is 30°C and vacuum drying for 12h to obtain the The fiber photocatalyst.
[0023] The fiber photocatalyst of the polyacrylonitrile fiber loaded nano-titanium dioxide prepared in this example can react with the rhodamine B dye (wherein, the wavelength of the ultraviolet light is 365nm, the radiation flux density is 7.6 mW / cm 2 , Concentration of 6ppm aqueous solution, fiber dosage of 1g / L) photocatalytic degradation...
Embodiment 2
[0025] 1) Prepare mixed solvent: prepare mixed solvent with dimethyl sulfoxide / absolute ethanol in a volume ratio of 85 / 15 (v / v);
[0026] 2) Preparation of nano-titanium dioxide dispersion: adding P25 to the mixed solvent prepared in step 1), and ultrasonic dispersion, to obtain a nano-titanium dioxide dispersion with a solid content of 0.05 g / L;
[0027] 3) Dip coating: After the polyacrylonitrile fiber is passed through the nano titanium dioxide dispersion prepared in step 2) at a speed of 1m / s, it is then solidified in water and formed, washed and dried; the drying condition is vacuum drying at 40°C to obtain the The fiber photocatalyst.
[0028] The fiber photocatalyst of the polyacrylonitrile fiber loaded nano-titanium dioxide prepared in this example can react with the rhodamine B dye (wherein, the wavelength of the ultraviolet light is 365nm, the radiation flux density is 7.6 mW / cm 2 , Rhodamine B dye concentration is 6ppm aqueous solution, fiber photocatalyst dosage is 1g / L...
Embodiment 3
[0030] 1) Prepare mixed solvent: prepare mixed solvent with dimethyl sulfoxide / absolute ethanol at a volume ratio of 80 / 20 (v / v);
[0031] 2) Preparation of nano titanium dioxide dispersion: adding P25 to the mixed solvent prepared in step 1), and after ultrasonic dispersion, a solid content of 0.01 g / L nano titanium dioxide dispersion is obtained;
[0032] 3) Dip coating: the polyacrylonitrile fiber is passed through the nanometer titanium dioxide dispersion prepared in step 2) at a speed of 0.5m / s, then it is solidified in water, washed and dried; the drying condition is vacuum drying at 45°C to obtain the Fiber photocatalyst.
[0033] The fiber photocatalyst of the polyacrylonitrile fiber loaded nano-titanium dioxide prepared in this example can react with the rhodamine B dye (wherein, the wavelength of the ultraviolet light is 365nm, the radiation flux density is 7.6 mW / cm 2 The photocatalytic degradation efficiency of dye concentration is 6ppm aqueous solution, fiber photocatal...
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