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Ruthenium Iridium Coated Titanium Anode Plates for Salt Water Chlorinator Electrolysis Cell

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Place of Origin: Shaanxi, China
Brand Name: AOTI
Application: water treatment
Technique: sand blasting, brush coating
Grade: pure titanium
Powder Or Not: Not Powder
Ti Content (%): 99.6
Product Name: Ruthenium iridium coated titanium anode plates
Keyword: titanium anode plate
Material: Grade 1 Pure Titanium
Coating: Ru-Ir Ir-Ta Pt
Certificate: SGS ISO TUV
Advantage: Effective. Long Working Life
Shape: Plate Mesh Tubular Bar Wire
Payment: Advance
Package: Wooden Case
MOQ: 1piece

Quantity:

Product Name

Ruthenium iridium coated titanium anode plates for salt water chlorinator

Material

Gr1 Titanium as substrate, mmo as coating

Coating types

Ru-Ir,Ir-Ta,Ru-Ir-Sn,Ru,PbO2,platinum

Technology

Sand blasting, Acid washing and Brush Coating

Dimension & Shape

Plate . Different dimension and shape is available, or according to client's drawing

Working

Parameter 

Current density≤2000A/M2

PH 0.1~14

Max content of Fluoride ion is 200PPM

Features

1.Stability dimension

2.Lower electricity consumption

3.High catalytic

4.Effectively production efficiency

5.Strong corrosion resistance,long working life 

Application

1.Drinking Water electrolysis
2.HHO Generator
3.Electroplating
4.Electrolytic organic synthesis
5.Electrodialysis
6.swimming pool disinfectant
7.perchlorate protection
8.Cathodic protection
9.chlor-alkali industry,ects.

Titanium anode is a kind of electro-catalysis electrode in electro-chemistry, which is composed by substrate that is pure titanium and coated that is precious metal oxide.

1. Substrate treatment: it needs to be treated by roughing, cleaning and removing oil, which can increase the compactness of catalytic.   

2. Brushing & Drying:After substrate treatment, it will be proceeded brush coated. The main coated content is platinum group metal, which is a kind of mixed solution.

3. Heat Treatment:Heat treatment will be proceed after drying.

The whole procedure need to be repeated many times. This method is better to form thin oxide catalytic that is lamellar adhere to substrate surface. 


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