Titanium anode for ozone production

Substrate: ASTM Grade 1 Titanium
Coating: Pt-Ir mixed metal oxide
Current Density: 500–5000 A/m²
Temperature Range: 5°C to 40°C
Ozone Output: 10–200 g/m³
Current Efficiency: ≥12%
Coating Loading: 15–30 g/m²
Application: Electrolytic ozone generation systems
Product Description

What Is Titanium Anode for Ozone Production and How to Choose the Right One for Your Industry?

A Titanium anode for ozone production is a high-performance electrochemical electrode designed to generate ozone efficiently through water electrolysis or gas-phase electrochemical reactions. It typically uses a titanium substrate coated with advanced catalytic materials such as RuO₂–IrO₂ mixed metal oxide to enhance oxygen evolution and ozone generation efficiency. These anodes are widely applied in water purification, disinfection systems, industrial oxidation processes, and advanced wastewater treatment systems.

In industrial applications, ozone generation requires stable current efficiency, strong corrosion resistance, and long-term durability under high oxidative conditions. Titanium anodes are preferred due to their excellent conductivity, lightweight structure, and resistance to aggressive electrolytes.

When selecting the right Titanium anode for ozone production, key factors include current density range, coating formulation, operating voltage, electrode geometry, and service environment. Mesh, plate, and tubular structures are commonly chosen depending on reactor design. A well-designed anode improves ozone yield, reduces energy consumption, and ensures stable long-term performance.

HY Ti-Ni Import & Export provides engineered Titanium anode solutions tailored for high-efficiency ozone generation systems across industrial and environmental applications.

water-treatment-anode water-treatment-anode water-treatment-anode water-treatment-anode

 

Features of Titanium Anode for Ozone Production

 

Superior Corrosion Resistance、Ultra-Long Service Life、High Electrocatalytic Activity & Efficiency、Eco-Friendly、Low Maintenance

 

Superior Corrosion Resistance
Superior Resistance to Corrosion Damage
The titanium anode boasts outstanding anti-corrosion performance to withstand harsh acidic, alkaline and saline electrolyte environments for stable long-term operation.
Ultra-Long Service Life
Ultra-Long and Reliable Service Life
With stable coated active layers and robust titanium substrate, this anode achieves remarkably extended service cycles far exceeding conventional metal anode alternatives.
High Electrocatalytic Activity & Efficiency
High Electrocatalytic Activity & Efficiency
Its specialized noble metal coating delivers excellent electrocatalytic performance, lowering cell voltage and improving overall electrolysis energy utilization efficiency.
Eco-Friendly
Environmentally Friendly and Energy Saving
No harmful heavy metal dissolution occurs during electrolytic reactions, avoiding secondary pollution and complying with global environmental production standards.
Low Maintenance
Low Maintenance with Reduced Costs
Structurally stable with minimal electrode degradation in regular service, requiring few downtime checks and negligible spare part replacement costs.

Full Customization Solutions to Meet Your Specific Needs!

 

Customization Available (Size, Material, Coating, Shape, Lifespan & Installation)

 

Titanium anode for ozone production
 
 

Titanium anode for ozone production can be fully customized according to industrial requirements:

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  • Custom sizes available for different reactor designs
  • Titanium Grade: Gr1 / Gr2 / high-purity titanium
  • Coating options: RuO₂–IrO₂ / mixed metal oxide / platinum-coated
  • Shapes: mesh, plate, tube, rod, ribbon, or customized structure
  • Adjustable current density for different ozone output requirements
  • Tailored operating voltage for energy-efficient performance
  • Extended coating lifespan up to industrial-grade durability standards
  • OEM/ODM design for special ozone generation systems
  • Custom electrode spacing and connection configurations
  • Surface treatment optimized for high oxidation environments
  • Flexible installation types for water and gas-phase systems
  • Application-specific engineering for disinfection and oxidation reactors

HY Ti-Ni Import & Export ensures each Titanium anode for ozone production meets precise industrial requirements with stable performance and long service life.

Why Choose Titanium Anode from HY Ti-Ni Import & Export?

At Hengyi Ti-Ni Import Export, we  specialize in titanium-based electrochemical materials with strong engineering capability in anode system design.

Titanium anode for ozone production

HY Ti-Ni Import & Export, located in Baoji High-tech Development Zone, is a professional manufacturer of advanced titanium anode systems. We specialize in electrochemical electrode technology with strong engineering and OEM/ODM capabilities. Our Titanium anode for ozone production products are built with strict quality control from substrate selection to final testing.

We offer stable coating performance, high ozone generation efficiency, and long operational life under harsh conditions. With a complete industrial supply chain in Baoji, we ensure fast production, consistent quality, and competitive pricing.

Our technical team supports customized design for different ozone reactors and industrial systems. We focus on long-term partnerships by providing reliable products, responsive service, and continuous technical support worldwide.

 

 


Titanium Anode Purchase Guide: A Comprehensive Guide

Choosing the right Titanium anode for ozone production requires careful evaluation of your system requirements, operating conditions, and performance targets. The first step is to clearly define your application, such as drinking water sterilization, industrial wastewater treatment, or high-intensity oxidation processes. Each application demands different ozone output levels and electrode configurations.

Next, consider the operating environment, including electrolyte composition, salinity, temperature range, and continuous or intermittent operation. These factors directly influence coating stability and anode lifespan. For high-corrosion or high-load systems, RuO₂–IrO₂ or mixed metal oxide coatings are generally recommended due to their strong catalytic stability.

You should also evaluate the required current density and operating voltage. Higher current density increases ozone output but requires optimized cooling and system design to avoid electrode degradation. Additionally, selecting the correct geometry—mesh, plate, tubular, or rod—ensures proper integration with your reactor structure and improves electrochemical efficiency.

Service life and maintenance cost are also key considerations. A well-designed titanium anode reduces downtime and long-term operational expenses. Finally, always work with a manufacturer that provides OEM/ODM customization, technical support, and quality testing reports.

HY Ti-Ni Import & Export can help you match the ideal anode specification to achieve stable, efficient, and cost-effective ozone production performance.

Purchase Guide

1. What is a Titanium anode for ozone production?
2. Main Technical Parameters of a Titanium anode for ozone production.
3. Specifications of a Titanium anode for ozone production.
4. Current Output of Standard Titanium anode for ozone production.
5. Applications of a Titanium anode for ozone production.
6. How to Purchase the Suitable Titanium anode for ozone production?
7. FAQ

8. Our Factory

 

Products Introduction
Titanium anode for ozone production
 
 

What Is Titanium anode for hydrogen production by electrolysis of seawater?

 

 

 

 

A Titanium anode for ozone production is an electrochemical electrode used to generate ozone through controlled oxidation reactions. It consists of a titanium base coated with catalytic materials such as RuO₂–IrO₂, which enhance oxygen evolution efficiency. These anodes are widely used in water treatment, sterilization, and industrial oxidation systems. They offer high corrosion resistance, stable performance, and long service life. Compared to traditional electrodes, titanium anodes provide higher energy efficiency and better durability under strong oxidative environments, making them ideal for continuous ozone generation applications.

Main Technical Parameters 
Parameter Typical Range
Base Material Titanium Gr1 / Gr2
Coating Type RuO₂–IrO₂ / MMO
Current Density 100 – 2000 A/m²
Operating Voltage 1.0 – 3.5 V
Ozone Efficiency High conversion efficiency
Temperature Range -10°C to 80°C
Design Life 5 – 15 years
Installation Type Water / gas phase reactors

Specifications 
Type Structure Application
Mesh Anode Open mesh Water treatment systems
Plate Anode Flat sheet Industrial reactors
Tube Anode Cylindrical Flow systems
Rod Anode Linear Compact units
Custom System OEM design Ozone generators

Cerrent output of Standard 
Type Current Output (mA/m²) Application Condition
Standard System 10 – 30 Low-load systems
Medium Output 30 – 60 Industrial water treatment
High Output 50 – 100 Heavy oxidation systems
Industrial System 20 – 80 Continuous operation
Customized System Up to 100+ High-efficiency ozone reactors
Applications of MMO Titanium Anode
Be used in a wide range of industries.

 

Water Treatment Industry

Water Treatment Industry

Electroplating Industry

Electroplating Industry

Chlor-Alkali Industry

Chlor-Alkali Industry

Marine Engineering

Marine Engineering

Hydrogen Energy Industry

Hydrogen Energy Industry

Mining And Metal Recovery

Mining and Metal Recovery

How to Purchase the Suitable Titanium Anode
  • Define your ozone generation capacity requirement
  • Confirm operating environment (water or gas phase)
  • Select appropriate anode type (mesh, plate, tubular, etc.)
  • Choose coating system based on oxidation strength
  • Determine required current density and voltage range
  • Evaluate expected service life and maintenance cycle
  • Provide reactor design for customized fitting
  • Confirm chemical composition of working medium
  • Request OEM/ODM engineering support if needed
  • Balance cost efficiency with long-term durability
  • Ensure compatibility with power supply system
  • Consult HY Ti-Ni technical team for optimization
Titanium anode for ozone production

 

FAQ

Q1: How long does the anode last?
Typically 5–15 years depending on operating conditions.

Q2: Can it be customized?
Yes, full OEM/ODM customization is available.

Q3: Is it suitable for seawater systems?
Yes, with proper coating selection.

Q4: What affects ozone efficiency?
Current density, coating type, and reactor design.

Q5: Do you provide technical support?
Yes, HY Ti-Ni provides full engineering support globally.

 

Our Factory
Water Treatment Anode | High Efficiency | Long Service Life | Eco-Friendly

Production site

State-of-the-art manufacturing for  titanium anodes, precision coating and quality control.

choosing titanium substrate
Choseing titanium substrate
Substrate Cutting
Substrate Cutting
Sandblasting
Sandblasting
Pickling
Pickling
Configure Precious Metal
Laser Cutting Configure Precious
Metal
Coating
Coating
 
Sintering
Sintering
 
Packaging
Packaging
 

Workshop

Precision machining and coating workshop for titanium anodes.

Titanium anode coating workshop
Titanium anode coating workshop
 
 
Thermal decomposition sintering furnace workshop
Thermal decomposition sintering furnace workshop
 
Titanium mesh anode production area
Titanium mesh anode production area
 
Pickling/surface treatment process
Pickling/surface treatment process
 
Pickling/surface treatment process
Pickling/surface treatment process
Quality inspection workshop
Quality inspection workshop
 
Worker operation photos
Worker operation photos
 
Panoramic view of a clean production line
Panoramic view of a clean production line

Quality inspection

Rigorous testing for coating adhesion, electrochemical performance, and durability.

Dimension Inspection
Dimension Inspection
Coating Thickness Testing
Coating Thickness Testing
Coating Adhesion Testing
Coating Adhesion Testing
Microstructure Analysis
Microstructure Analysis
Conductivity Testing
Conductivity Testing
Corrosion Resistance Testing
Corrosion Resistance Testing
Bond Strength Testing
Bond Strength Testing
Final Inspection & Packaging
Final Inspection & Packaging

Packaging

Professional packaging to prevent damage and corrosion during transportation.

Packaging Packaging Packaging Packaging
Packaging Packaging Packaging Packaging

Certifications

International certifications ensuring quality and environmental compliance.

ISO 9001:2015
ISO 9001:2015
ISO 14001:2015
ISO 14001:2015
CE Marking
CE Marking
RoHS Compliant
RoHS Compliant
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