Preparation method of novel white carbon black with high reinforcing capacity
A white carbon black and reinforcement technology, which is applied in chemical instruments and methods, fibrous fillers, inorganic pigment treatment, etc., can solve the problems affecting the comprehensive mechanical properties of vulcanized rubber, poor compatibility and dispersion, and poor reinforcement of white carbon black and other problems, to achieve good fuel saving, reduce agglomeration, and inhibit agglomeration
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Embodiment 1
[0033] The invention provides a technical solution: a method comprising the following steps:
[0034] A) Raw material preparation:
[0035] Step (1): Add solid sodium silicate and water into the caustic soda kettle, then feed steam into the soda caustic kettle, close the soda caustic kettle, and obtain a concentration of 2.0mol / L to 2.5mol / L after discharging the material. Water glass solution with a number of 2.5 to 3.5;
[0036] Step (2): 0.05-0.2 parts by weight of sodium hydroxide, 0.05-0.2 parts of sodium salicylate, and 5-10 parts of deionized water are uniformly mixed, and the mixture is added to a reaction kettle and stirred for 30 minutes to prepare a water-emulsion mixture;
[0037] Step (3): 10-25 parts by weight of natural rubber latex, 30-60 parts of divinylpyridine, 15-40 parts of natural rubber latex, 100-400 parts of deionized water, and 5-15 parts of ammonia water are made into deionized water;
[0038] B) slurry preparation:
[0039] Step (4): passing the ...
Embodiment 2
[0059] The difference between this embodiment and Embodiment 1 is that the drying is far-infrared drying, and the far-infrared drying is to use the far-infrared radiation emitted by the far-infrared radiation element to be absorbed by the heated substance to make its molecules and atoms vibrate. The temperature rises rapidly to drive liquid molecules such as water out of the material to achieve the purpose of drying.
Embodiment 3
[0061] The difference between this embodiment and Example 1 is: A) raw material preparation:
[0062] Step (1): Add solid sodium hydroxide and water into the caustic soda kettle, then pass steam into the soda caustic kettle, close the soda caustic kettle, and obtain water with a concentration of 2.0mol / L and a modulus of 3 after discharging glass solution;
[0063] Step (2): 0.12 parts by weight of sodium hydroxide, 0.1 parts of sodium salicylate, and 5 parts of deionized water were uniformly mixed, and the mixture was added to the reactor and stirred for 30 minutes to prepare a water-emulsion mixture;
[0064] Step (3): 15 parts by weight of natural rubber latex, divinylpyridine 40, natural rubber latex 15, deionized water 300, and ammonia water 12 are made into deionized water;
[0065] B) slurry preparation:
[0066] Step (4): passing the water glass solution obtained in the step (1) into a reactor, controlling the water content of the water glass solution to be 84%;
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