【Characteristics of Ruthenium-Iridium Coating】Ruthenium-iridium (Ru-lr) titanium anodes are high-performance electrode materials that combine the properties of the three metals ruthenium, iridium and titanium and are mainly used for anodic reactions in electrochemical processes. 【Composition】The electrolytic plate is made of DSA type electrode, anode plate coated with MMO precious metal oxide electrocatalytic coating. It can be used in salt water, tap water, sea water and other environments. 【Advantages of Titanium Electrode Plate】Titanium plate uses industrial pure Gr1 titanium as the substrate, with dimensional stability, good electrical conductivity and high corrosion resistance. 【Applications 】Chlor-alkali industry, industrial water treatment, swimming pool disinfection, sewage treatment, seawater electrolysis, water heater anticorrosion, metal electrolysis refining, etc. 【What will I get?】titanium electrode plates*2. Length:150mm/5.9 inches,Width:40mm/1.57inches,Fastener Length:80mm/3.15inches.We can also provide you with customized service according to the drawings or dimensions provided by customers.
Item: titanium anode plates with MMO ruthenium-iridium coating
Quantity:2
Material:ruthenium, iridium and titanium
Dimension: Length: 150 mm/5.9 inches,width:40 mm/1.57 inches,fastener length :80 mm/3.15 inches.
【Characteristics of ruthenium-iridium titanium anode】
1. Excellent electrochemical performance: with fast electrode reaction rate, suitable for occasions requiring efficient electrochemical conversion.
2. Corrosion resistance: excellent performance in acidic, alkaline and high temperature environments, not easy to be corroded in long-term stable work.
【Areas of application】
1. Chlor-alkali industry: production of (NaOH), NaCLO, is one of its main applications.
2. Water treatment: including industrial water treatment, swimming pool disinfection, sewage treatment, using its chlorine precipitation properties for disinfection. -Sea water electrolysis:Used to prepare hydrogen and oxygen, or to produce chlorine gas under specific conditions.