Preparation method of green pigment capable of reflecting infrared ray, and thermal-insulation paint
A green pigment, infrared technology, used in polyester coatings, fibrous fillers, dyeing physical treatment and other directions, to achieve good infrared reflection performance, good performance effect
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Embodiment 1
[0014] (1) By weight, weigh the raw materials of the following components: 100 parts of titanium dioxide, 45 parts of molybdenum trioxide, put into a ball mill and mix and grind evenly to obtain a composite doping component;
[0015] (2) By weight, weigh the raw materials of the following components: 100 parts of chromium trichloride hexahydrate, 15 parts of aluminum sulfate 18 hydrate, 2.5 parts of composite doping components, 350 parts of water, put into a container and mix and stir Evenly, chromium trichloride hexahydrate and aluminum sulfate octadecahydrate are dissolved in water to obtain a composite suspension system;
[0016] (3) Under the action of ultrasonic vibration and stirring dispersion, ammonia water is added dropwise to the composite suspension system, so that the chromium ions and aluminum ions in the composite suspension system form mixed colloidal precipitation of chromium hydroxide, aluminum hydroxide and composite doping components , continue to drop exces...
Embodiment 2
[0019] Each step is the same as embodiment 1, but process parameter is different:
[0020] The molybdenum trioxide in the composite doping component is 40 parts; the aluminum sulfate octadecahydrate in the composite suspension system is 10 parts, the composite doping component is 2 parts, and water is 300 parts; the composite precipitate is fired at 1000 ° C for 2 hours .
Embodiment 3
[0022] Each step is the same as embodiment 1, but process parameter is different:
[0023] The molybdenum trioxide in the composite doping component is 50 parts; the aluminum sulfate octadecahydrate in the composite suspension system is 20 parts, the composite doping component is 3 parts, and water is 400 parts; the composite precipitate is fired at 1050 ° C for 3 hours .
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