The future is here: the technological frontier and industrial trends of white carbon black
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Nanocrystallization: ultrafine silica with particle size<50nm is prepared by sol-gel method, which significantly improves the reinforcement performance and transparency, and meets the needs of high-end optical films.
Composite: Composite with graphene and carbon nanotubes to develop conductive and thermally conductive multifunctional materials for use in 5G base station heat dissipation and flexible electronics.
Intelligence: Utilizing AI to optimize production parameters, achieve precise control of the particle size of gas-phase white carbon black, and reduce energy consumption by 15% -20%.
Circular economy: Recycling white carbon black from waste tires, purifying it through pyrolysis acid leaching process, reducing costs by 40% compared to raw products, and promoting sustainable development of the industry.
Conclusion: White carbon black, as a "universal additive" in the field of new materials, is penetrating from traditional industries to high-end manufacturing and green energy sectors. With technological breakthroughs and policy support, China is expected to achieve a leap from a production capacity powerhouse to a technological powerhouse within 3-5 years, contributing key material solutions to the global carbon neutrality goal.