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Electrolysis and Electroplating Composite Ion Exchange Membrane
Electrolysis and Electroplating Composite Ion Exchange Membrane
Electrolysis and Electroplating Composite Ion Exchange Membrane
Electrolysis and Electroplating Composite Ion Exchange Membrane

Electrolysis and Electroplating Composite Ion Exchange Membrane

  • Keywords:composite ion exchange membrane, ion exchange membrane, electrolysis membrane, electroplating membrane
  • Category:Hydrogen-related Materials

The Electrolysis and Electroplating Composite Ion Exchange Membrane is a high‑performance electrochemical material designed for efficient ion transfer in industrial electrolysis and electroplating processes. Constructed with multilayer composite structures combining polymers, inorganic fillers, and reinforcement layers, it provides superior mechanical strength, chemical resistance, and high ionic conductivity. The membrane minimizes energy losses, enhances process efficiency, and ensures long‑term durability under harsh operating conditions. It is widely applied in metal electroplating, water electrolysis, chemical synthesis, renewable energy systems, and industrial electrochemical applications.

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Product Overview

The electrolysis and electroplating composite ion exchange membrane is a high-performance composite membrane material, featuring a high-strength PTFE mesh support layer combined with perfluorosulfonic acid resin of specific molecular weight and ion exchange capacity. The membrane has uniform thickness and excellent conductivity, enabling efficient ion transport and stable operation in electrolysis and electroplating processes. It is widely used in electrochemical chlorine dioxide generators, etchant recovery of copper, gold salt preparation, amino acid purification, caustic soda production, and electrodialysis processes.

Working Principle

The composite ion exchange membrane achieves high proton or ion conductivity through ion channels formed by the perfluorosulfonic acid resin, while the PTFE mesh support layer enhances mechanical strength and durability. The membrane maintains low swelling and dimensional stability under strong acid, strong alkali, and high-temperature/high-humidity conditions, ensuring rapid ion migration during electrolysis or electroplating processes, thereby improving process efficiency and product quality.

Key Features

  • High-Strength Structure:PTFE mesh support layer reinforces overall membrane durability.
  • Excellent Conductivity:Conductivity >0.100 S/cm, enabling rapid ion transport and increased production efficiency.
  • Low Swelling Performance:Maintains dimensional stability under high-temperature and high-humidity conditions.
  • Wide Applicability:Resistant to strong acids, strong alkalis, and harsh operating conditions, suitable for diverse electrolysis and electroplating scenarios.

 

Applications

  • Chlorine Dioxide Generators:Provides stable ion exchange performance in electrochemical chlorine dioxide production.
  • Etchant Recovery and Precious Metal Preparation:Efficiently supports copper, gold salt, and other material recovery and preparation processes.
  • Amino Acid Purification:Facilitates the purification and refining of amino acids and other organic compounds.
  • Caustic Soda Production and Electrodialysis:Ensures high ion conductivity and long-term durability in caustic soda manufacturing and electrodialysis processes.
Item EN-417 EN-4110
Thickness (μm) 260 360
Grammage (g/m²) 340 470
Tensile Strength (MPa) >40 >40
Elongation at Break (%) 3100 3100
Specific Gravity 1.35 1.35
Conductivity (S/cm) >0.100 >0.100
Acid Capacity (meq/g) 1.00 ± 0.05 1.00 ± 0.05
Water Content (%) 5.0 ± 3.0 5.0 ± 3.0
Water Absorption (%) 50.0 ± 5.0 50.0 ± 5.0
Thickness Swelling (23°C, 50% RH, Soaking) ≤5%(23°C) ≤10%(100°C)
Linear Swelling (23°C, 50% RH, Soaking) ≤2%(23°C) ≤5%(100°C)

 

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Electrolysis and Electroplating Composite Ion Exchange MembraneElectrolysis and Electroplating Composite Ion Exchange Membrane

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