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  • no evidence of cancer or other adverse effects in mice and rats exposed to high concentrations of food-grade TiO2 (long-term or lifetime study)
  • For that reason, the Center for Science in the Public Interest has graded titanium dioxide as a food additive that consumers should seek to “avoid.” Scientists at the nonprofit nutrition and food safety watchdog group today published a new entry for titanium dioxide in its Chemical Cuisine database of food additives.  

  • Rutile Titanium Dioxide Hutong HTR-628

  • Wholesalers dealing in TiO2 must adhere to global safety standards, such as OSHA (Occupational Safety and Health Administration) guidelines in the United States, and the EU's REACH (Registration, Evaluation, Authorisation, and Restriction of Chemicals) regulations. These guidelines emphasize the need for proper personal protective equipment (PPE), including respirators, gloves, and goggles, during handling and transportation.

  • Package:
    25KG/50KG Woven bag with inner, or 1000kg big woven plastic bag.



    Company Information
         Loman Chemical Group (include Shanghai Loman Chemical Co Ltd; Wuhu Loman Chemical Co Ltd and Wuhu Loman Titanium Industial Co Ltd.)is one of the main titanium dioxide manufacturers in china, producing various high quality Anatase and Rutile titanium dioxide. Loman brand products, has being widely used in paper, paint, plastic, ink, coating, rubber, cosmetic, food, fiber, etc.
          In order to meet different requirements of various customers, we actively expand producing other pigments, include Lithopone, Barium sulfate and Silica. Annual production volume of anatase and rutile grade titanium dioxide have reached 100,000 tons, lithopone 30.000 tons, barium sulfate 50.000 tons and precipitated silica 8.000 tons. The Loman brand is one of the famous brands in China, having great popularity both at home and abroad. Our products have been widely used in European, North America and Southeast Asia. 

    Our advantages:
    1)With the most professional manufacturers,High quality and high safety product

    2)Professional consulting services are availabe for you at antyime

    3)Have a favorable price ,reliable quality

    4)Complete products meet your purchasing need

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    Titanium dioxide is a versatile material with a wide range of applications. Some of its most common uses include:
    1. Pigment and Food Coloring
    Titanium dioxide is one of the most widely used white pigments, often used to add whiteness and brightness to products. It is used in the production of paints, coatings, plastics and other products to provide a white color or opacity.
    It’s also used in food products to provide a white color. Candies, cakes and creamers are examples of foods that may contain titanium dioxide for its color enhancing and bleaching properties.
    2. Cosmetics
    Titanium dioxide is often used as a UV absorber and pigment in cosmetic products, such as foundations, lipsticks, creams, sunscreens and other skin care products. It helps protect the skin from the harmful effects of UV rays by blocking them, while providing a brightening effect.
    However, it can cause photosensitivity, which

  • Physical and Chemical Properties

  • Often used as a glaze for ceramics, titanium dioxide provides a bright, glossy finish and improves the durability and stain resistance of ceramic products.

  • Titanium is a common metal element frequently found throughout nature. In our environment, titanium is naturally exposed to oxygen, forming titanium oxides that we find in many minerals, dusts, sands, and soils.

  • The Process of Gravimetric Determination of TiO2


  • TiO2 possesses different qualities depending on whether it is produced as a pigment or a nanomaterial. Both forms are tasteless, odourless and insoluble.

  • In food products, E171 is not a singular ingredient; it’s always combined with other ingredients (e.g., proteins and fats) in the food product. Digesting food is a slow process for the body compared to drinking a beverage, which passes much faster through the body. 

  • Our titanium dioxide products are known for their exceptional whiteness, brightness, and opacity, making them ideal for a wide range of applications. Whether you need titanium dioxide for use in sunscreen, paint, or food coloring, we have the right product for you.
  • TiO2 comes in many different forms. However, only a few of these forms are considered food-grade (acceptable to be added to food). Many studies that raised concern about the safety of TiO2, including the concern for genotoxicity, used forms of TiO2 that are not considered acceptable for use in food and have different properties than food-grade TiO2. Other studies did use food-grade TiO2, but took steps to break the material down into smaller particles than what would normally be found in food.

  • Analyst Insight

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  • Our extensive network of consultants, raw material suppliers, machinery suppliers and subject matter experts spans over 100+ countries across North America, Europe, Asia Pacific, South America, Africa, and the Middle East.
  • 2. Lithopone is widely used in the plastic industry.

  • On the other hand, the sulfate process involves treating ilmenite ore with sulfuric acid to produce titanyl sulfate solution, which is then calcined to produce titanium dioxide. This method produces lower-quality titanium dioxide with a higher impurity level, making it less expensive than the chloride process. However, the sulfate process is more commonly used due to its lower cost and higher yield.
  • Lithopone is used in water-based paints because of its excellent alkali resistance. It is also used as a whitener and reinforcing agent for rubber and as a filler and whitener for paper.

  • Titanium dioxide, or TiO2, sometimes referred to as E171, is an inorganic, solid substance used in a wide range of consumer goods including cosmetics, paint, plastic and food, according to the American Chemistry Council.

  • What is the time required to break even?
  • Let’s break the risk down further.  

  • Titanium dioxide comes in the form of a white powder and is sometimes used in cosmetics to adjust a color to a lighter shade. This is also why it can produce a white cast.

  • Because of health risks, France banned titanium dioxide as a food additive in 2020. Two years later the European Union also banned titanium dioxide as a food additive. 

  • Another key aspect of titanium dioxide manufacturing is research and development. With advancements in technology and the constant demand for higher-performing products, manufacturers must invest in research to stay ahead of the competition. This includes developing new formulations, improving production processes, and exploring innovative applications for titanium dioxide.


  • Today, TiO2 factories employ advanced technologies and rigorous quality control measures to ensure consistent product quality and minimize environmental harm. They also invest in research and development to improve production efficiency and explore new applications for titanium dioxide. For example, some factories have developed nano-sized TiO2 particles that exhibit enhanced UV-blocking properties, making them ideal for use in sunscreens and cosmetics For example, some factories have developed nano-sized TiO2 particles that exhibit enhanced UV-blocking properties, making them ideal for use in sunscreens and cosmetics For example, some factories have developed nano-sized TiO2 particles that exhibit enhanced UV-blocking properties, making them ideal for use in sunscreens and cosmetics For example, some factories have developed nano-sized TiO2 particles that exhibit enhanced UV-blocking properties, making them ideal for use in sunscreens and cosmeticstinox tio2 factories.
  • Cristal Global Holdings Ltd., a major producer of titanium dioxide, prides itself on operational excellence and a strong global presence. Their focus on quality and customer satisfaction has earned them a respected position in the market.
  • To make up the batch of lithopone the solution containing the original 1050 pounds of barium sulphide and 856 pounds of titanium acid cake is added to sufiicient zinc sulphate solution of approximately 35 Baum at 60 Centigrade to completely precipitate all the BaS as zinc sulphide and barium sulphate so that the final precipitate contains a suspen-. sion of co-p'recipitated zinc sulphide barium sulphate intimately mixed with a suspension of titanium oxide. On the completion of the reaction, shown by the complete absence of either soluble zinc or barium in a filtered por-.
  • Secondly, TiO2 acts as a UV stabilizer in plastics. When exposed to sunlight, plastics can degrade over time due to the harmful effects of ultraviolet rays. However, TiO2 has the ability to absorb UV radiation and convert it into heat, preventing the degradation of the plastic material However, TiO2 has the ability to absorb UV radiation and convert it into heat, preventing the degradation of the plastic material However, TiO2 has the ability to absorb UV radiation and convert it into heat, preventing the degradation of the plastic material However, TiO2 has the ability to absorb UV radiation and convert it into heat, preventing the degradation of the plastic materialtio2 used in plastic manufacturers. This property extends the lifespan of plastic products and reduces the need for frequent replacements, making it an eco-friendly option for manufacturers.
  • To meet the growing demand for TiO2, manufacturers are exploring new technologies and processes to optimize production. One such technology is the use of fluidized bed reactors, which allow for more efficient heat and mass transfer, resulting in higher production rates and lower energy consumption One such technology is the use of fluidized bed reactors, which allow for more efficient heat and mass transfer, resulting in higher production rates and lower energy consumption One such technology is the use of fluidized bed reactors, which allow for more efficient heat and mass transfer, resulting in higher production rates and lower energy consumption One such technology is the use of fluidized bed reactors, which allow for more efficient heat and mass transfer, resulting in higher production rates and lower energy consumptiontio2 e171 manufacturers. Another promising approach is the development of nanostructured TiO2, which exhibits enhanced properties such as improved photocatalytic activity and UV absorption.
  • Within these broad categories, there are further sub-classifications based on the end products produced. For instance, some factories specialize in producing fine ground calcium carbonate (FGCC), commonly used in paper, paint, and plastic industries due to its filler properties. Others focus on producing coated calcium carbonate, where the particles are coated with stearic acid or other substances to enhance dispersion and performance in applications like adhesives and sealants Others focus on producing coated calcium carbonate, where the particles are coated with stearic acid or other substances to enhance dispersion and performance in applications like adhesives and sealants Others focus on producing coated calcium carbonate, where the particles are coated with stearic acid or other substances to enhance dispersion and performance in applications like adhesives and sealants Others focus on producing coated calcium carbonate, where the particles are coated with stearic acid or other substances to enhance dispersion and performance in applications like adhesives and sealantsclassification of calcium carbonate factory.
  • The trend in the production of NPs is likely to lead to increasing amounts of nano-powders in the air, water and soil, which will consequently affect living organisms. Labielle et al. demonstrated that 25 % of Al(OH)3-coated TiO2 particles from sunscreens are dispersed as a stable colloid and become available to microorganisms and filter-feeders, while the remaining 75 % are probably incorporated into geogenic sediments, where they could become available to benthic fauna. Solar UV iradiation may penetrate as far as 20 m in the water column  and therefore photo-activate the dispersed particles, which may have an adverse effect on various aquatic organisms.