Iridium oxide-coated titanium anodes, also known as MMO anodes, play a critical role in the electroplating process. In electroplating, the anode is responsible for attracting metal ions in the electrolyte and depositing metal onto the substrate.
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Compared to other types of anodes, iridium oxide-coated titanium anodes offer several advantages in the electroplating process. Firstly, they have a longer lifespan and require less maintenance, which can save time and money in the long run. Secondly, they are highly resistant to corrosion, which ensures that they can withstand the harsh conditions of the electroplating process.
Additionally, iridium oxide coated titanium anodes have a high electrical conductivity, which allows them to perform effectively in the electroplating process. This, combined with their durability and resistance to corrosion, makes them an ideal choice for electroplating applications.
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Overall, the use of iridium oxide coated titanium anodes in electroplating can help to improve the efficiency and effectiveness of the process. By reducing costs, increasing the lifespan of the anodes, and providing consistent performance, these anodes are a reliable and cost-effective solution for many different electroplating needs.
Titanium anodes with Iridium Oxide Coating for Electrochemical Degradation of Organic Pollutants:
Electrochemical oxidation is an effective method to treat high-concentration wastewater, it can degrade complex organic pollutants in wastewater into non-toxic small molecular organic compounds or carbon dioxide and water through mineralization of various organic pollutants.
In the electrocatalytic oxidation process, different electrode materials behaviors various efficiency. Choosing an appropriate electrode material is an effective way to improve the efficiency of the electrochemical degradation result. Dimensionally stable anode (DSA) has good stability and catalytic activity and has been widely used. It is a kind of noble metal oxides (such as RuO2 and IrO2) with strong corrosion resistance and high stability coated on the titanium. This electrode has the advantages of high oxygen evolution potential, low cost, and easy operation,
UTron manufacture a nanocrystal iridium oxide coated titanium anodes for electrochemical degradation of organic pollutants by thermal decomposition method, which shows high chemical oxygen demand (COD) removal rate and efficient degradation result.