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  • In a 2021, Chinese researchers examined the impact of E171 on lipid digestion and vitamin D3 bioaccessibility in a simulated human gastrointestinal tract model. They examined Vitamin D’s bioaccessibility, or the amount it was released in the gastrointestinal tract, becoming available for absorption, and found it “significantly decreased from 80% to 74%” with the addition of E171. In the experiment, E171 decreased lipid digestion dose-dependently. Researchers wrote: “The findings of this study enhance our understanding toward the potential impact of E171 on the nutritional attributes of foods for human digestion health.”  The study was published in the Journal of Agricultural and Food Chemistry

  • In a 2022 study published in the Journal of Hazardous Materials, scientists wanted to examine the effects of titanium dioxide as a food additive on atherosclerosis in mice. (Atherosclerosis refers to a hardening of the arteries.) Researchers fed mice 40 mg/kg of the food additive every day for 4 months, and found that it not only altered gut microbiota but also led to a significantly increased atherosclerotic lesion area, especially in animals that consumed a high-choline western diet (HCD).

  • Although the evidence for general toxic effects was not conclusive, on the basis of the new data and strengthened methods our scientists could not rule out a concern for genotoxicity and consequently they could not establish a safe level for daily intake of TiO2 as a food additive.

  • Decreased Vitamin D bioaccessibility 

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  • In addition to its UV protection properties, P25 TiO2 also offers high photocatalytic activity. When exposed to sunlight, it can break down organic compounds and pollutants, making it an effective agent for environmental remediation. This property makes P25 TiO2 a valuable addition to paints and coatings, as it can help reduce the amount of volatile organic compounds (VOCs) released into the atmosphere, thereby contributing to air quality improvement.
  • Dispersion in the polymer: optimum dispersion should produce a good distribution and separation of titanium dioxide particles in the formulation.

  • The report can also be customized based on the requirement of the customer 
  • One of the key factors to consider when choosing a supplier of rutile titanium dioxide is the quality of the product. The supplier should have a reputation for providing high-quality titanium dioxide that meets industry standards. This includes ensuring that the product has a high level of purity, excellent dispersibility, and consistent particle size distribution. The supplier should also have a robust quality control system in place to monitor the production process and ensure that the product meets customer requirements.
  • The profiles of key players and their key strategic developments are enlisted in the report.