Platinised Titanium Anode

Introduction : Our Platinised Titanium Anodes stand at the forefront of advanced materials designed to address the challenges of corrosive environments and electrochemical processes. Combining the unique properties of titanium with a platinum coating, these anodes offer unparalleled performance in various industrial applications. From electrolysis to metal finishing, our Platinised Titanium Anodes are engineered to deliver exceptional corrosion resistance and efficiency.

Key Features

  • Corrosion Resistance Beyond Conventional Limits : Platinised Titanium Anodes leverage the corrosion-resistant properties of titanium, enhanced by a platinum coating. This combination ensures exceptional resistance to corrosive chemicals and aggressive environments, making them ideal for applications in electroplating, water treatment, and more.
  • High Catalytic Activity : The platinum coating on these anodes provides high catalytic activity, facilitating electrochemical reactions with greater efficiency. This feature is particularly advantageous in processes requiring precise control and enhanced reaction kinetics.
  • Uniform Current Distribution : Engineered for optimal electrochemical performance, Platinised Titanium Anodes ensure uniform current distribution across their surface. This characteristic minimizes the risk of uneven plating or coating in electrochemical processes, enhancing the quality and consistency of the final product.
  • Extended Service Life : The combination of titanium's durability and platinum's catalytic properties results in a Platinised Titanium Anode with an extended service life. This longevity reduces the frequency of replacements, contributing to cost savings and increased operational efficiency.
  • Versatility Across Industries : Platinised Titanium Anodes find applications in a wide range of industries, including electroplating, metal finishing, chemical processing, and water treatment. Their versatility stems from the ability to tailor the anodes to meet specific requirements, providing customized solutions for diverse industrial needs.
  • Resistance to Fouling and Scaling : The smooth and inert nature of the platinum coating minimizes the risk of fouling and scaling on the anode's surface. This feature is crucial in processes involving fluids prone to impurities or deposits, ensuring sustained performance over time.
  • Precise Control in Electrolysis : In electrolytic processes, precision is paramount. Platinised Titanium Anodes offer precise control over electrochemical reactions, making them well-suited for applications such as electro-winning, electro-galvanizing, and electrochlorination.


Advantages and Common Uses

  • Electroplating and Metal Finishing : Platinised Titanium Anodes are widely used in electroplating processes, providing a durable and corrosion-resistant surface for consistent metal deposition. They are also employed in metal finishing applications to enhance the quality and durability of surface coatings.
  • Chlor-Alkali Industry : In the chlor-alkali industry, where processes such as sodium hydroxide production occur, Platinised Titanium Anodes offer long-term stability and resistance to the harsh chemical environment.
  • Water Treatment : Platinised Titanium Anodes play a crucial role in electrochemical water treatment processes, facilitating the removal of contaminants and ensuring the production of clean and safe water.
  • Electrolytic Cells and Electrochemical Synthesis : Their uniform current distribution and high catalytic activity make these anodes suitable for various electrolytic cells and electrochemical synthesis applications, where precision and efficiency are paramount.
  • Cathodic Protection Systems : Platinised Titanium Anodes are used in cathodic protection systems to prevent corrosion on structures such as pipelines and storage tanks, offering long-lasting protection in corrosive environments.

Custom built size in single pass and multi pass tubular heat exchanger with necessary self support to provide and economical and efficient heat exchange from solution.
Various coil configuration are available to suit the individual application. Standard design are :- Grid Coils, Serpentine Coils, U-coils, Helical Coils.




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