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Our Titanium Anode Applications

Proven Projects and Sustainable Electrochemical Solutions

Ehisen titanium anodes are widely used in global industrial projects. With stable performance and long service life, our anodes help reduce maintenance cost and improve energy efficiency in demanding electrochemical environments.

cathodic protection

Reliable corrosion control for long-term asset safety

Our ruthenium-iridium and mixed metal oxide (MMO) coated titanium anodes provide stable current output for pipelines, storage tanks, marine structures, and underground facilities. High bonding strength and low consumption rate ensure long-lasting corrosion protection.

chemical field

Durable anodes for harsh chemical environments

Titanium anodes with iridium-tantalum or platinum coating are suitable for chlor-alkali production, electro-oxidation, and other chemical electrolysis processes. Uniform coating and dimensional stability help maintain consistent performance under high current density.

electrometallurgical field

Efficient metal recovery and refining

Our coated titanium anodes are applied in copper, zinc, nickel, and other non-ferrous metal electrowinning systems. Low resistivity and excellent coating adhesion improve current efficiency and reduce downtime.

metal foil production

Precision anodes for high-quality foil manufacturing

Titanium anodes are widely used in copper foil and metal foil electroforming lines. Stable coating and uniform current distribution support high surface quality and consistent thickness control.

electroplating

Stable performance for high-demand plating lines

For hard chrome plating, PCB plating, and decorative electroplating, our titanium anodes provide strong coating adhesion and long service life. Suitable for reverse pulse current systems and customized shapes such as mesh, plate, and tube.

water treatment

Advanced electrochemical oxidation solutions

MMO coated titanium anodes are used in sewage treatment, industrial wastewater treatment, and disinfectant generation. High catalytic activity and corrosion resistance ensure reliable operation in continuous systems.

electrodialysis

Stable electrode materials for membrane systems

Our titanium anodes are designed for electrodialysis and electro-deionization systems. Excellent dimensional stability and chemical resistance support long-term membrane protection and process stability.

new energy

Supporting hydrogen production and energy storage

Titanium anodes are applied in electrolytic hydrogen production and other new energy electrochemical systems. High durability and optimized coating technology improve energy efficiency and operational reliability.

PCB field

High precision anodes for PCB electroplating

Designed for printed circuit board plating lines, our titanium anodes ensure uniform current distribution and extended service life. Compatible with high-speed plating and strict quality control requirements.

FAQs

Frequently Asked Questions About Titanium Anodes

The following questions come from professional buyers in electroplating, PCB manufacturing, water treatment, electrolytic hydrogen production, and cathodic protection projects. These focus on real technical and procurement concerns.

MMO titanium anodes (Mixed Metal Oxide Titanium Anodes) offer lower energy consumption, stable oxygen evolution potential, and longer service life. In electroplating and electrolysis systems, they reduce sludge generation, minimize downtime, and improve current efficiency. They are suitable for high current density and continuous operation lines.

Ru-Ir titanium anodes are commonly used in chloride media and sodium hypochlorite generation. Ir-Ta titanium anodes are more suitable for high oxygen evolution environments such as electrolytic hydrogen production. Platinum coated titanium anodes are used in precision electroplating and applications requiring high conductivity and stability. The correct choice depends on current density, electrolyte composition, pH value, and temperature.

Current density is a key factor for titanium anode service life. Operating above the recommended A/m² range will accelerate precious metal coating consumption. Professional suppliers provide lifetime prediction based on design current density and accelerated life testing data to help estimate long-term operating cost.

PCB plating lines require uniform current distribution and high dimensional stability. Titanium anodes used in reverse pulse plating systems must have strong coating adhesion and precise mesh or plate structure. This prevents local overheating and coating failure during high-frequency operation.

High-quality titanium anodes should pass coating thickness inspection, adhesion testing, electrochemical performance testing, and accelerated life testing. For large projects, third-party material testing reports are often required to confirm precious metal content and titanium substrate grade.

In wastewater treatment, electro-oxidation, and water electrolysis systems, low resistivity and high catalytic activity titanium anodes reduce cell voltage and energy consumption. Proper anode sizing and current distribution design can also extend replacement intervals and lower total maintenance cost.

Ru/Ir/Ta MMO oxides and other platinum-group oxide coatings requiring oxidizing atmospheres.

High-quality titanium anodes normally use Grade 1 or Grade 2 titanium substrate. The correct titanium grade ensures corrosion resistance, mechanical strength, and stable coating adhesion. Buyers should confirm material certificate and chemical composition report before production.

Professional suppliers provide accelerated life testing under specific current density and electrolyte conditions. This data helps buyers estimate real service life and compare total operating cost instead of only unit price.

Each MMO titanium anode is designed with a specific A/m² range. Operating within the recommended current density ensures stable oxygen evolution, low coating consumption, and predictable lifetime in electrolysis systems.

Coating thickness is controlled by multiple coating and thermal decomposition processes. Stable coating thickness ensures uniform catalytic activity and long-term dimensional stability, especially in electroplating and water treatment applications.

Yes, titanium anodes can be customized according to tank dimensions, electrolyte flow direction, and current distribution requirements. Proper anode layout design improves plating uniformity and reduces energy consumption.

For export and engineering projects, suppliers can provide ISO certification, material test reports, coating inspection reports, and packing details. Complete documentation helps procurement teams complete quality audits and project approvals smoothly.

Ehisen Titanium Anode Applications

Efficient and Reliable Electrochemical Solutions

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At Ehisen, we believe in building a sustainable future for generations to come. Connect with us today to explore how our titanium anodes can support your industry’s needs.

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We’re ready to help you with high-performance titanium anodes for your project. Let’s work together for a greener tomorrow.

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Our main office and factory is located at:

Ehisen Metal, No. 369, Gaoya Industrial Park, Weibin District, Baoji City, Shaanxi Province, China 721013

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