Method for preparing anatase-like titanium dioxide nanometer powder
A titanium dioxide, anatase type technology, applied in the direction of titanium dioxide, titanium oxide/hydroxide, etc., to achieve the effects of less environmental pollution, short production cycle, and easy control of the reaction process
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Embodiment 1
[0035]First, a molar concentration of 0.1 mol / L of tetrabutyl titanate (CR) ethanol deionized water solution was prepared to form a uniform titanium-containing solution, wherein the molar ratio of ethanol to deionized water was 1:1; then the polyacrylamide ( CR), polyvinyl alcohol (CR) and polyethylene glycol (CR) are dissolved in deionized water at a molar ratio of 1:1:1 to form a mixed dispersion with a concentration of 0.001 mol / L; then the mixed dispersion Add to the uniform titanium-containing solution, stir vigorously to form a uniformly dispersed titanium-containing solution; then weigh the ammonia (CR) and sodium hydroxide (AR) at a molar ratio of 1:1 to dissolve in the mixed dispersion, and stir to obtain a molar concentration of 0.5mol / L uniformly dispersed lye; then the uniformly dispersed lye is added dropwise to the dispersed titanium-containing solution, wherein the molar ratio of alkali to titanium in the dispersed lye and the dispersed titanium-containing solution ...
Embodiment 2
[0037] Firstly, a molar concentration of 10 mol / L of tetrabutyl titanate (CR) ethanol deionized water solution was prepared to form a uniform titanium-containing solution, in which the molar ratio of ethanol to deionized water was 1:6; the polyacrylamide (CR) , Polyvinyl alcohol (CR) and polyethylene glycol (CR) are dissolved in deionized water at a molar ratio of 1:10:1 to prepare a mixed dispersion with a concentration of 1mol / L; add the above mixed dispersion to the above homogeneous In the titanium-containing solution, stir vigorously to form a uniformly dispersed titanium-containing solution; weigh ammonia (CR) and sodium hydroxide (AR) at a molar ratio of 3:1 to dissolve in the mixed dispersion, and stir to obtain a concentration of 10mol / L Disperse the lye evenly; then add the evenly dispersed lye dropwise to the dispersed titanium-containing solution, where the molar ratio of alkali to titanium in the dispersed lye and the dispersed titanium-containing solution is 6:1, and...
Embodiment 3
[0039] Firstly, a molar concentration of 5 mol / L is used to prepare an ethanol deionized aqueous solution of tetrabutyl titanate (CR) to form a uniform titanium-containing solution, wherein the molar ratio of ethanol to deionized water is 1:3; then the polyacrylamide (CR) ), polyvinyl alcohol (CR) and polyethylene glycol (CR) are dissolved in deionized water at a molar ratio of 1:1:1 to make a mixed dispersion with a concentration of 0.1 mol / L; then add the mixed dispersion In the uniform titanium-containing solution, vigorously stir to form a uniformly dispersed titanium-containing solution; then weigh the ammonia water (CR) and sodium hydroxide (AR) at a molar ratio of 2:1 to dissolve in the mixed dispersion, and stir to obtain a molar concentration of 5mol / L uniformly disperse the lye; then add the uniformly dispersed lye dropwise to the dispersed titanium-containing solution, the molar ratio of alkali to titanium in the dispersed lye and the dispersed titanium-containing solu...
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