Process for preparing large particle surface loaded nano crystal titanium dioxide light catalyst
A surface-loaded, photocatalyst technology, applied in the direction of catalyst activation/preparation, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the problems of low activity, poor bonding strength, etc., and achieve product cost reduction, small air resistance, The effect of simple process
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Embodiment 1
[0019] (1) Preparation of the transition layer sol: n-butyl titanate is used as the precursor, and the ratio of the precursor solution is: n-butyl titanate: ethanol: diethanolamine: water=1:8:0.1:0.05 (volume ratio ) into a solution. The order of adding the four substances is as follows: first add water to the ethanol solution, then add diethanolamine as a stabilizer, and then add the n-butyl titanate solution dropwise to the above mixed solution, so that a light yellow uniform and transparent solution can be obtained. It was airtight and allowed to stand for 3 days for gelation to obtain a transparent sol with a certain viscosity.
[0020] (2) At room temperature, clean the oil stain on the surface of the glass ball with a cleaning agent, then roughen the surface of the glass ball with 4% HF solution, wash with deionized water, and dry. Immerse the glass ball in the sol of the transition layer, then pull it at a speed of 20cm / min, centrifuge to shake off the excess sol attac...
Embodiment 2
[0022] (1) Preparation of the transition layer sol: n-butyl titanate is used as a precursor, and the ratio of the precursor solution is: n-butyl titanate: ethanol: diethanolamine: water = 1: 10: 0.12: 0.055 (volume ratio ) into a solution. The order of adding the four substances is as follows: first add water to the ethanol solution, then add diethanolamine as a stabilizer, and then add the n-butyl titanate solution dropwise to the above mixed solution, so that a light yellow uniform and transparent solution can be obtained. Sealed and left to stand for 5 days for gelation to obtain a transparent sol with a certain viscosity.
[0023] (2) Preparation of active suspension: Add 1 g of nano-titanium dioxide powder into 50 ml of deionized water, then add about 3-4 drops of 2 mol / l nitric acid, and stir for 24 hours at 50° C. to obtain active suspension.
[0024] (3) At room temperature, clean the oil stain on the surface of the glass ball with a cleaning agent, then roughen the s...
Embodiment 3
[0027] (1) Preparation of the transition layer sol: n-butyl titanate is used as the precursor, and the proportioning ratio of the precursor solution is: n-butyl titanate: ethanol: diethanolamine: water = 1: 12: 0.15: 0.06 (volume ratio ) into a solution. The order of adding the four substances is as follows: first add water to the ethanol solution, then add diethanolamine as a stabilizer, and then add the n-butyl titanate solution dropwise to the above mixed solution, so that a light yellow uniform and transparent solution can be obtained. Sealed and left to stand for 7 days for gelation to obtain a transparent sol with a certain viscosity.
[0028](2) The preparation of the active layer sol: with n-butyl titanate as the precursor, the proportion of the precursor solution is: n-butyl titanate: ethanol: diethanolamine: water=1: 12: 0.15: 0.06 (volume ratio ) into a solution. The order of adding the four substances is as follows: first add water to the ethanol solution, then a...
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