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The first commercial production of TiO2 began in the early 20th century, using the sulfate process. This method involved reacting ilmenite ore with sulfuric acid to produce titanium sulfate, which was then calcined to obtain titanium dioxide. However, this process had several drawbacks, including high energy consumption, generation of large amounts of waste, and release of harmful gases such as sulfur dioxide. As a result, many factories transitioned to the chloride process, which offers higher purity TiO2 and reduced environmental impact.

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In conclusion, the determination of barium as TiO2 in industrial factories requires a combination of analytical techniques depending on the specific requirements of the application. Each method has its own advantages and limitations, and the choice of technique should be based on factors such as accuracy, precision, cost, and turnaround time. With the proper selection and implementation of these techniques, manufacturers can ensure the quality and safety of their products while complying with environmental regulations.

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When selecting a supplier, it's essential to consider factors such as their reputation, product quality, certifications, and sustainability practices. A reputable supplier should provide certificates of analysis to guarantee the purity and composition of the product. Moreover, environmental concerns are increasingly significant, and responsible sourcing of raw materials and eco-friendly manufacturing processes are becoming non-negotiable.

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Titanium dioxide holds exceptional significance as a white pigment due to its superior scattering capabilities, remarkable chemical stability, and non-toxic nature. Among all white pigments, it surpasses others in terms of its ability to scatter light effectively. Consequently, titanium dioxide stands as the most significant inorganic pigment, accounting for the highest quantity in usage. The majority part of the global production of ilmenite and rutile is dedicated to the production of TiO2 pigments. The remaining portion is utilized for the manufacturing of titanium metal and in the production of welding electrodes.

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