• Titanium Electrode for Seawater Electrolysis
  • Titanium Electrode for Seawater Electrolysis
  • Titanium Electrode for Seawater Electrolysis
  • Titanium Electrode for Seawater Electrolysis
  • Titanium Electrode for Seawater Electrolysis
  • Titanium Electrode for Seawater Electrolysis

Titanium Electrode for Seawater Electrolysis

After-sales Service: Yes
Warranty: 24 Month
Type: Microfiltration Machine
Method: Chemical Treatment
Usage: Industrial, Home, Agriculture, Hospital, Nuclear Wastewater Treatment
Application: Treatment of Medical Wastewater
Customization:
Gold Member Since 2016

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

Basic Info.

Model NO.
TESE SERIES
Ti Content (%)
99.6%
Grade
Titanium Grade 1
Technique
Sanding Blasting, Acid Washing, Brush Coating
Processing Service
Bending, Welding, Decoiling, Cutting, Punching
Available Anode Type
Mesh, Sheet/Plate,Bar/ Rod/Wire, Pipe/Tube
Available Coating Type
IR02-Ruo2-TiO2-X /Iro2-Tao5/PT/Nb/Ta
Coating Color
Black
Support Design&Customize
Yes
Maximum Order Quantity
1 Set
Lead Time
5-7 Days
Transport Package
Individual Packing + Wooden Box
Specification
MMO Titanium electrode set
Trademark
CHB or customization
Origin
China
Production Capacity
20000PCS

Product Description

Detailed Photos

Titanium Electrode for Seawater ElectrolysisTitanium Electrode for Seawater ElectrolysisTitanium Electrode for Seawater Electrolysis

Product Description

The application and working principle of titanium electrodes in the electrolysis of seawater can be elaborated as follows:

Application of Titanium Electrodes in Electrolysis of Seawater

Titanium electrodes find extensive applications in the electrolysis of seawater, primarily in the following areas:

1, Seawater Desalination: By electrolyzing seawater, water molecules are decomposed into hydrogen and oxygen, thereby achieving seawater desalination. Titanium electrodes, with their excellent corrosion resistance and electrical conductivity, serve as crucial components in this process.

2, Chlorine Production and Disinfection: During seawater electrolysis, chlorine gas is generated at the anode, which further reacts with water to produce strong oxidizing agents such as sodium hypochlorite. These substances possess potent disinfection and sterilization capabilities, making them useful for preventing fouling in seawater pipelines, cooling water systems, and more.

3, Utilization of Seawater Resources: Beyond desalination and chlorine production, the electrolysis of seawater can also be used to prepare other chlorine-containing compounds, such as bleaching powder and hydrochloric acid, further expanding the utilization of seawater resources.

Working Principle of Titanium Electrodes in Electrolysis of Seawater

The working principle of titanium electrodes in the electrolysis of seawater is based on electrochemical principles, detailed as follows:

1, Electrode Material Selection: Titanium electrodes are chosen for their exceptional corrosion resistance and electrical conductivity, making them suitable for use in seawater electrolysis. To enhance the electrode's electrocatalytic activity and reduce energy consumption, a special coating, such as ruthenium-iridium or other noble metal oxide coatings, is often applied to the electrode surface.

2, Electrolysis Process: In the electrolytic cell, titanium electrodes function as both the anode and cathode. When a direct current passes through the cell, ions in the seawater migrate directionally under the influence of the electric field.

**Anode Reaction: At the anode, chloride ions (Cl¯) lose electrons and are oxidized into chlorine gas (Cl2). Due to the low concentration of sodium chloride in seawater, oxygen evolution also occurs at the anode, where water molecules lose electrons to form oxygen (O2).

**Cathode Reaction: At the cathode, water molecules gain electrons and are reduced into hydrogen ions (H-) and hydroxide ions (OH-). The hydrogen ions then combine to form hydrogen gas (H2), which is released.

**Intermediate Reactions: The chlorine gas produced at the anode reacts with the hydroxide ions generated at the cathode in the solution, forming strong oxidizing agents such as sodium hypochlorite (NaClO).

3,  Product Utilization: The generated chlorine gas and strong oxidizing agents like sodium hypochlorite possess potent disinfection and sterilization capabilities, making them suitable for preventing fouling in seawater pipelines, cooling water systems, and more. Additionally, the hydrogen gas can be utilized in the energy sector, achieving efficient energy utilization.

Product Parameters
 
Electrode combination anode * 7 or customization 
Electrode size 267mm*50mm*1.0mm or customization
Electrode combination weight 0.50Kg , Determined according to actual customization
Working current 15A or customization
Operating voltage 40V or customization

Product specifications: Custom production in the form of components or according to customer drawings.
 

Installation Instructions

 

Titanium Electrode for Seawater Electrolysis
Titanium Electrode for Seawater Electrolysis
 
Packaging & Shipping

Titanium Electrode for Seawater Electrolysis

Certifications

Titanium Electrode for Seawater Electrolysis

 
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 Electrode for Seawater Electrolysis
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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