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  • Titanium Dioxide Raw Material Tio2 Powder

  • Titanium dioxide, an oxide of titanium, is primarily used as a pigment due to its high refractive index, opacity, and whitening properties. In China, the production of R996 grade TiO2 exemplifies the country's commitment to manufacturing excellence and technological advancement in this sector. This particular grade is known for its superior performance, making it suitable for a range of applications including paints and coatings, plastics, paper, and even food and cosmetics.
  • Micronized TiO2 factories employ sophisticated processes that ensure a consistent product with precise particle size distribution. The production process begins with raw ore extraction, followed by beneficiation to remove impurities. The refined ore then goes through a chemical process that converts it into titanium dioxide. This conversion typically involves the sulfate or chloride process, where the ore reacts with sulfuric acid or chlorine gas, respectively.
  • Titanium dioxide suppliers play a pivotal role in the supply chain, ensuring a consistent and reliable source of this essential material. They source TiO2 from mines rich in titanium-bearing minerals, primarily ilmenite and rutile, and then process it through various refining techniques, including the sulfate and chloride processes. The end product is a high-purity white pigment that finds applications across numerous sectors.


  • Polyvinyl butyral (PVB) is dissolved into 12 ~ 14% solution with ethanol and made into film. It is used for printing paper film of ceramic (or enamel) products. The fired ceramic (or enamel) patterns have bright color and smooth texture. The flower paper is characterized by convenient use, low cost, smaller than the original glue, greatly reducing the decal process and high color burning rate. At present, most porcelain factories in China have formed relatively formal production lines for standardized production. Therefore, the demand for PVB in the ceramic (or enamel) flower paper industry is increasing.

    Application field of polyvinyl butyral -- electronic adhesive

    Polyvinyl butyral contains hydroxyl, vinyl acetate and butyraldehyde, which has high bonding properties. Phenolic 
    Resin was added into PVB ethanol solution to make adhesive, which can be used for a long time at 120 ℃. The product has strong adhesion to metal, wood, leather, glass, fiber and ceramics; FRP can be manufactured to replace non-ferrous metals such as steel, aluminum and copper; The adhesive made by adding this product and curing agent into epoxy resin is often used for bonding and assembly of electronic instrument components, bonding between metal and porous materials, emergency repair, etc. it can also be used in the field of electronic ceramics. In the development of ceramic integrated electronic circuits, this product with medium viscosity and low hydroxyl is used as ceramic powder adhesive to increase the primary strength of ceramics.

    Application field of polyvinyl butyral -- copper foil adhesive

    Polyvinyl butyral (PVB) and phenolic resin cooperate to produce copper foil adhesive, which is used in the production of copper clad laminate. It has good peel strength and tin welding temperature resistance, and is widely used in various fields.

    Application field of polyvinyl butyral - self adhesive enamelled wire paint

    Polyvinyl butyral is the main raw material of self-adhesive enamelled wire paint. After the enameled wire is wound and formed in the electrodes of motors, electrical appliances and instruments, as long as it is heated for several minutes at a certain temperature or treated with appropriate solvent, the coils can be bonded together by themselves without impregnation and drying.

  • In conclusion, titanium dioxide is a versatile wholesale ingredient with a wide range of applications in various industries. Its excellent whiteness, opacity, and durability make it an ideal choice for a variety of products, from paints and coatings to plastics and cosmetics. As demand for these products continues to grow, the demand for titanium dioxide as a raw material is also likely to increase.
  • This article discusses the discovery of phosphorescent lithopone on watercolor drawings by American artist John La Farge dated between 1890 and 1905 and the history of lithopone in the pigment industry in the late 19th and early 20th centuries. Despite having many desirable qualities for use in white watercolor or oil paints, the development of lithopone as an artists' pigment was hampered by its tendency to darken in sunlight. Its availability to, and adoption by, artists remain unclear, as colormen's trade catalogs were generally not explicit in describing white pigments as containing lithopone. Further, lithopone may be mistaken for lead white during visual examination and its short-lived phosphorescence can be easily missed by the uninformed observer. Phosphorescent lithopone has been documented on only one other work-to-date: a watercolor by Van Gogh. In addition to the history of lithopone's manufacture, the article details the mechanism for its phosphorescence and its identification aided by Raman spectroscopy and spectrofluorimetry.

  • The future of micronized TiO2 factories lies in innovation and sustainability. Ongoing research aims to improve the efficiency of production processes, decrease energy consumption, and lessen the environmental impact even further. Nanotechnology may play a significant role in achieving these goals, offering potential improvements in particle size control and process optimization.