Cellulose/nano inorganic particle composite pigment, preparation method therefor and application of cellulose/nano inorganic particle composite pigment
A technology of nano-inorganic particles and composite pigments, which is applied in the field of dyeing pigments, can solve the problems of poor compatibility between large-sized inorganic particles and plastic substrates, decreased mechanical properties of plastic products, and poor tinting strength of inorganic pigments, so as to achieve durable and firm coloring. Ability, not easy to fall off, the effect of strong coloring ability
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Embodiment 1
[0036] Add 0.4 mol of ferric chloride, 0.2 mol of ferrous sulfate and 16 times the mass of cellulose to water to form a suspension. Then add sodium hydroxide solution (1mol / L) to adjust the pH value of the solution to 9-10, and stir at 60°C for 2 hours. Filter and dry to obtain a red composite pigment cellulose / iron red.
[0037] 0.1 mol of ammonia, 0.3 mol of ferric chloride and 18 times the mass of cellulose are added to water to form a suspension. Stir at 95°C for 4 hours. Filter and dry to obtain the yellow composite pigment cellulose / iron yellow.
[0038] First add 0.3 mol potassium ferricyanide and cellulose into deionized water, add hydrochloric acid to adjust the pH to 1-2 to obtain material A; then dissolve 0.4 mol ferrous sulfate in deionized water, and add hydrochloric acid to adjust the pH of the solution The value is 1-2, and material B is obtained. The mass of cellulose in material A is 25 times the total mass of iron in material A and material B. Mix material A ...
Embodiment 2
[0044] Add 0.2 mol of iron sulfate, 0.1 mol of ferrous chloride, and 18 times the mass of cellulose to form a suspension in water. Then add sodium hydroxide solution (2mol / L) to adjust the pH to 11-12, and stir at 70°C for 3 hours. Filter and dry to obtain a red pigment-cellulose / iron red.
[0045] Add 0.2 mol of ammonia, 0.6 mol of iron sulfate and 20 times the mass of cellulose to the water. Stir at 80°C for 6 hours. Filter and dry to obtain yellow pigment-cellulose / iron yellow.
[0046] First add 0.6 mol potassium ferricyanide and cellulose to deionized water, then add sulfuric acid to adjust the pH to 1-2 to obtain material A; then dissolve 0.8 mol ferrous sulfate in deionized water, and add sulfuric acid to adjust the pH of the solution For 1-2, get material B. The mass of cellulose is 28 times the total mass of iron. Mix material A and material B, heat to 60°C and stir for 4 hours. Filter and dry to obtain a blue pigment-cellulose / Prussian blue.
[0047] After testing, t...
Embodiment 3
[0049] 0.4 mol of ferric nitrate, 0.2 mol of ferrous nitrate and 20 times the mass of cellulose are added to water to form a suspension. Then add potassium hydroxide solution (3mol / L) to adjust the pH to 9-10, and stir at 80°C for 1 hour. Filter and dry to obtain red cellulose / iron red.
[0050] Dissolve 0.1 mol ammonia, 0.3 mol ferric nitrate and 22 times the mass of cellulose into the water. Stir at 95°C for 3 hours. Filter and dry to obtain yellow cellulose / iron yellow.
[0051] First add 0.15 mol of sodium ferricyanide and cellulose to deionized water, then add hydrochloric acid to adjust the pH of the solution to 1-2 to obtain material A; then dissolve 0.2 mol of ferrous nitrate in deionized water, and add hydrochloric acid to adjust the solution The pH value is 1-2, and material B is obtained. The mass of cellulose is 30 times the total mass of iron. Mix material A and material B, heat to 80°C and stir for 2 hours. Filter and dry to obtain blue cellulose / Prussian blue. ...
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