A kind of preparation method of high light resistance laminated paper titanium dioxide pigment
A titanium dioxide, laminated paper technology, applied in chemical instruments and methods, inorganic pigment treatment, fibrous fillers, etc., can solve the problem of not meeting the light resistance requirements of high-end laminated decorative paper, and achieve good average particle size and particle size distribution. , high proportion, good whiteness effect
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Embodiment 1
[0028] 1.1. Weigh 300g of the primary rutile titanium dioxide powder prepared by the chlorination method, add deionized water to prepare a slurry with a concentration of 300g / L, use a pH meter to detect the pH value of the slurry during the entire coating process, and use sodium hydroxide solution Regulate slurry pH to 8.5, add concentration and be 50g / L citric acid solution, wherein the addition of citric acid accounts for TiO 2 0.2% by weight, aging for 20 minutes; 1.2. Heat the ground slurry to 55°C, and maintain this temperature throughout the coating process;
[0029] 1.3. Add 2.0% (in P 2 o 5 accounted for TiO 2 by weight) sodium tripolyphosphate solution, the concentration of sodium tripolyphosphate solution is P 2 o 5 Calculated as 80g / L, at the same time, the concentration is calculated as Al 2 o 3 The aluminum chloride solution calculated at 80g / L maintains the pH value of the slurry at 4.0 and matures for 30 minutes to form a dense aluminum phosphate coating l...
Embodiment 2
[0035] 1.1. Weigh 450g of the primary rutile titanium dioxide powder prepared by the chlorination method, add deionized water to prepare a slurry with a concentration of 450g / L, use a pH meter to detect the pH value of the slurry during the entire coating process, and adjust it with potassium hydroxide solution Slurry pH to 10.5, adding concentration is 80g / L ammonium citrate solution, wherein the addition of ammonium citrate accounts for TiO 2 1.0% by weight, dispersed for 40 minutes;
[0036] 1.2. Heat the ground slurry to 60°C, and maintain this temperature throughout the coating process;
[0037] 1.3. Add 6.0% (in P 2 o 5 accounted for TiO 2 by weight) sodium phosphate solution, the concentration of sodium phosphate solution is P 2 o 5 It is calculated as 100g / L, and the concentration is calculated as Al 2 o 3 The aluminum sulfate solution calculated as 100g / L maintains the pH value of the slurry at 6.0 and matures for 60 minutes to form a dense aluminum phosphate c...
Embodiment 3
[0043] 1.1. Weigh 400g of the primary rutile titanium dioxide powder prepared by the chlorination method, add deionized water to prepare a concentration of 400g / L, use a pH meter to detect the pH value of the slurry during the entire coating process, and adjust the slurry with potassium hydroxide solution pH to 9.5, adding a concentration of 100g / L sodium citrate solution, wherein the amount added to account for TiO 2 0.5% by weight, dispersed for 30 minutes;
[0044] 1.2. Heat the ground slurry to 65°C, and maintain this temperature throughout the coating process;
[0045] 1.3. Add 4.0% (in P 2 o 5 accounted for TiO 2 by weight) sodium hydrogen phosphate solution, the concentration of sodium hydrogen phosphate solution is P 2 o 5 It is calculated as 90g / L, and at the same time, the concentration is determined by Al 2 o 3 The aluminum sulfate solution of 90g / L maintains the pH value of the slurry at 6.5, and matures for 60 minutes to form a dense aluminum phosphate coat...
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