• Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
  • Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
  • Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
  • Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
  • Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

Type: Metal Electrode
Cooling System: Radiator
Function: Over Voltage Protection, Overheat Protection, Short Circuit Protection
Materials: Titanium Electrode
Current Density: 600A~800m²
Operating Voltage: 5V
Samples:
US$ 1590/Piece 1 Piece(Min.Order)
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Customization:
Gold Member Since 2016

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  • Overview
  • Detailed Photos
  • Product Parameters
  • Product Description
  • Installation Instructions
  • Packaging & Shipping
  • Certifications
  • Our Advantages
  • FAQ
Overview

Basic Info.

Model NO.
TRIEG SERIES
Electrolyte Temperature
25~40ºC
Certification
ISO9001/ISO14001/ISO45001
Support Customization
Yes
Mesh Size
5*10mm
Weight
2kg
Product Size
φ450*550*2.5mm
Package Size
φ460*460*560mm
Transport Package
Individual Packing + Wooden Box
Specification
φ 450*550*2.5mm
Trademark
CHB or customization
Origin
China
Production Capacity
500000PCS

Product Description

 
Detailed Photos

Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

 Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
Product Parameters
Size φ450*550*2.5mm
Current density 600A~800m²
Weight 2Kg
Electrolyte temperature 25~40ºC
Support customization YES
 
Product Description

Working Principle:

The working principle of titanium-based ruthenium-iridium electrode mesh buckets for electrolysis is primarily based on electrochemical reactions. During the electrolytic process, an external direct current (DC) is passed through an electrolyte solution, causing oxidation-reduction reactions to occur at the anode and cathode. The titanium-based ruthenium-iridium electrode, serving as the anode, plays a crucial role in this process.

  1. Anode Reaction: At the anode, oxidation reactions typically occur. For water or other oxygen-containing electrolytes, the anode reaction may involve the oxidation of water, generating oxygen (O2) and hydrogen ions (H+). The ruthenium-iridium coating provides excellent electrical conductivity and corrosion resistance, enabling these reactions to proceed efficiently.
  2. Cathode Reaction: Meanwhile, at the cathode, reduction reactions take place, such as the reduction of hydrogen ions to form hydrogen gas (H2).
  3. Role of Ruthenium-Iridium Alloy: The ruthenium-iridium alloy coating on the titanium substrate not only enhances electrical conductivity but also ensures long-term stable operation of the electrode in various chemical environments, including acidic, alkaline, and oxidative conditions.

Applications:

Titanium-based ruthenium-iridium electrode mesh buckets for electrolysis have a wide range of applications due to their unique electrochemical properties and corrosion resistance:

  1. Water Treatment:
    • Hardness Reduction: In electrolytic water treatment, the electrodes can facilitate the migration of calcium and magnesium ions to the cathode area, where they precipitate as calcium carbonate and magnesium hydroxide, reducing water hardness.
    • Disinfection and Algae Control: They can generate strong oxidants that effectively inhibit the growth of fungi and algae in cooling water systems, providing disinfection and algae control capabilities.
    • Water Quality Monitoring: They can be used to monitor water quality parameters such as oxidation-reduction potential and organic matter content.
  2. Electrolysis Industry:
    • Hydrogen Production: As anodes in water electrolysis for hydrogen production, they efficiently split water into hydrogen and oxygen gases.
    • Metal Extraction: In electrolytic metal extraction processes, they serve as electrodes in electrolytic cells, aiding in the extraction of metals from solutions.
    • Chlor-Alkali Electrolysis: In the chlor-alkali industry, they are used to electrolyze brine (saltwater) to produce chlorine gas and sodium hydroxide (caustic soda).
  3. Chemical Industry:
    • Electrochemical Reaction Catalysts or Supports: In the chemical industry, they often act as catalysts or supports for electrochemical reactions, promoting or accelerating chemical transformations.
    • Electrolytic Oxidation: In certain organic synthesis or chemical reactions, they are employed in electrolytic oxidation processes, converting reactants into desired products.
  4. Battery Manufacturing:
    • They are used in the production of high-performance batteries such as silver-oxide batteries, silver-zinc batteries, and nickel-metal hydride batteries, enhancing battery performance and longevity.
  5. Other Fields:
    • Medical Industry: In high-tech medical devices such as bioelectrochemical sensors, they have applications in monitoring physiological electrical signals and drug concentrations within the human body.
    • Electrochemical Research: As inert electrodes, they are used in various electrochemical experiments and research studies.


Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

Installation Instructions
Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

 

Packaging & Shipping

Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry

Certifications

Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry


 

Our Advantages

Our factory located in Baoji, China's titanium industry base, with a strong R & D team and production capacity. Efficient to provide customers with customized services.


Titanium-Ruthenium-Iridium Electrode Grid for Chemical Industry
FAQ


Question 1: We are very satisfied with this product. Can I customize my logo on the product?
Answer 1: Of course. We offer customized services.

Question 2: I want to adjust the size of this product to meet our needs, can you meet it?
Answer 2: Yes, this exhibit is our standard, it's only for reference. Please provide your specific requirements or drawings, we will customize for you.

Question 3: What's the lead time for this product?
Answer 3: 3-5days.

Question 4: What's the lead time for customization?
Answer 4: Sample delivery time of fixed products: 3-5days.  Mass production delivery time: 21-30 days.









 

 

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