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  • ruthenium iridium coated titanium electrode
ruthenium iridium coated titanium electrode

ruthenium iridium coated titanium electrode

 Titanium anode for electrolytic foil making, titanium anode for steel plate galvanizing/tin plating, titanium anode for alkaline/micro etching solution recovery of copper, titanium anode for cathodic protection, titanium anode for Electrodialysis, titanium anode for high-speed electroplating, titanium anode for surface treatment, titanium anode for organic synthesis, titanium anode for acidic Electrolysed water, titanium anode for precious metal electroplating, titanium anode for coking wastewater treatment, titanium anode for acidic electrolytic method treatment, titanium anode for electrolytic indium Titanium anodes are used for ammonia nitrogen wastewater.
Titanium anode for electrolytic foil production, titanium anode for steel plate galvanizing/tin plating, titanium anode for alkaline/micro etching solution recovery of copper, titanium anode for cathodic protection

Titanium anode for Electrodialysis, high-speed electroplating, surface treatment, organic synthesis, acid Electrolysed water

Titanium anodes for precious metal electroplating, titanium anodes for coking wastewater treatment, titanium anodes for acidic electrolysis, titanium anodes for electrolytic indium, and titanium anodes for ammonia nitrogen wastewater treatment.

(1) The anode size is stable, and the distance between electrodes does not change during the electrolysis process, which can ensure that the electrolysis operation is carried out under stable cell voltage conditions;

(2) Low working voltage, low power consumption, DC power consumption can be reduced by 10% -20%;

(3) Anodes have strong corrosion resistance and long working life. They can be used for 6 years in the chlor alkali industry, while graphite anodes only last 8 months;

(4) It can overcome the dissolution problem of graphite anode and lead anode, avoid pollution of electrolyte and cathode products, and thus improve the purity of metal products;

(5) The traditional graphite electrode is 8A/d ㎡, while the coated titanium electrode can reach 17A/d ㎡, increasing the current density, thereby improving efficiency and yield;

(6) The profile is easy to process and can produce high-precision products;

(7) The base metal titanium is insoluble and can be reused after recoating, reducing the cost of electrode use

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