Baoji Highstar Titanium Metal Co., Ltd, as a professional titanium electrode supplier, are dedicated to provide professional titanium electrode products worldwide.
In recent years, we have been supplying titanium electrode anodes for swimming pool disinfection to many European and American countries for a long time, mostly we only supply single titanium anodes and customers assemble them by themselves.
Our production has also expanded a lot from single coatings (ruthenium-iridium, iridium-tantalum, platinum, monoruthenium, monoruthenium) and now we also produce titanium electrode coatings with different contents according to the customer’s needs, it’s a great process and a mutual growth process, we thank all our customers, sincerely!
What are the advantages of the titanium electrodes we offer for swimming pool disinfection?
1. the electrolyte environment is relatively soft, so the use of ruthenium-iridium coating and single ruthenium coating is already perfectly adequate, which, as we all know, can save costs to a great extent.
2. most of our customers take the way of buying single pieces and assembling them by themselves in order to reduce costs, we also guarantee high quality products and the most competitive prices and good delivery time for our long-term customers.
What do you know about titanium electrode characteristics? Please check the table to deepen your understanding.
Name: | MMO Titanium Anode |
Titanium electrode Substrates and Coatings | Substrate: Gr1/TA1 Titanium Coating Material: Ruthenium oxide, iridium oxide, ruthenium iridium, platinum, iridium tantalum, ruthenium iridium tin and other coatings MMO Coating Thickness: 8-10mm |
Titanium electrode Features: | 1. High erosion-resisting 2. High current efficiency 3. High durability 4. Floor can circle after electrodes lose activity 5. Heavy current density, high productivity 6. Light weight |
Titanium electrode classification | 1.Precipitated chlorine gas titanium electrode: ruthenium iridium titanium electrode (sintering temperature: 450 degrees Celsius), the application of chlorine gas titanium electrode is relatively soft, such as in the chlor-alkali industry of water treatment or electrolysis of salt. Chlorine-precipitating titanium electrode refers to the general term for electrodes that can precipitate chlorine gas at the anode, mainly including ruthenium-titanium electrode, ruthenium-iridium electrode and ruthenium-iridium-tin electrode. 2.Oxygen evolution titanium electrode: iridium tantalum titanium electrode (sintering temperature: 480 degrees Celsius), used in harsh environments, such as sulfuric acid system, nitric acid system or mixed acid system. 3.Platinum-plated titanium electrode has good hydrogen production effect, high melting point, high strength, and stable electrothermal performance. It is mainly used in hydrogen-rich water cups and other industries that require hydrogen production. |
Titanium electrode application | Titanium anode for sewage treatment, titanium electrode for swimming pool disinfection, titanium electrode for sodium hypochlorite generator; titanium electrode for circulating water electrolysis descaling, titanium electrode for cathodic protection industry, titanium anode for electrodialysis, titanium anode for electroplating, titanium anode for chlor-alkali industry , Etching liquid recycling copper with titanium electrodes and other industries. |
The specific characteristics of titanium electrodes are as follows.
![]() ![]() | Properties: Low weight; Insoluble,dimensionally stable; Excellent conductivity; High current efficiency, energy saving. |
![]() ![]() | Coating: Ruthenium-iridium coating, ruthenium-titanium coating, iridium-titanium coating, platinum coating, iridium-tantalum coating, ruthenium-iridium-tin coating, etc. |
![]() ![]() | Base material: Gr1 titanium |
The titanium anode production process is as follows.
3.Heat treatment; annealing treatment is a treatment that is performed after the brushed coating is dried. This process needs to be repeated multiple times in order to make the coating better adhere to the surface of the titanium substrate. | ![]() |