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  • Furthermore, titanium dioxide imparts excellent brightness and opacity to plastics, which is crucial for achieving a consistent, high-quality appearance. It helps to mask any impurities or irregularities within the plastic material, resulting in a more attractive and marketable product. For example, in the production of white or light-colored plastic goods like appliances, packaging materials, and toys, TiO2 ensures an even, lustrous finish that consumers find appealing.
  • The Chinese lithopone B311 manufacturing industry is characterized by its competitiveness, technological advancement, and commitment to quality. The companies featured in this article are at the forefront of this industry, offering a diverse range of products and services that cater to the needs of customers worldwide. As the demand for lithopone B311 continues to grow, these manufacturers are well-positioned to capitalize on emerging opportunities and maintain their leadership position in the market.
  • A 2012 study published in the journal Environmental Science & Technology noted that children are especially exposed to titanium dioxide because of the food that contains the food additive and is particularly marketed to children, including candy and cakes.

  • In addition to product excellence, customer service is a key focus for TiO2 concrete suppliers. They provide technical support, assisting clients with product selection, dosage recommendations, and addressing any concerns during the application process. This personalized approach fosters long-term relationships and ensures customer satisfaction.
  • In a study published in the journal Toxicology, researchers examined the effects of exposing human colon cancer cell line (HTC116) titanium dioxide food additives in vitro. “In the absence of cytotoxicity, E171 was accumulated in the cells after 24 hours of exposure, increasing granularity and reactive oxygen species, inducing alterations in the molecular pattern of nucleic acids and lipids, and causing nuclei enlargement, DNA damage and tubulin depolymerization,” the scientists wrote. Researchers removed the additive from the culture, then examined the results 48 hours later. They found, “The removal of E171 was unable to revert the alterations found after 24 h of exposure in colon cells. In conclusion, exposure to E171 causes alterations that cannot be reverted after 48 h if E171 is removed from colon cells.”