
Customization:
With pure titanium construction, ensure corrosion resistance and durability in harsh chemical environments.
With customizable processing services (welding, cutting, bending, punching), adapt to diverse system designs and fabrication needs.
Achieve higher ion separation efficiency compared to conventional membranes*, enabling faster deionization and electrolysis processes.
Ideal for continuous operation in industrial water treatment and commercial electrolysis systems, ensuring consistent purity and output.
Meet stringent environmental and industrial safety standards, ensuring compliance with global regulations for water treatment applications.

Our Ion Exchange Membranes, including Anion and Cation Exchange Membranes, are engineered from pure titanium for exceptional durability and corrosion resistance. Designed for critical applications in water treatment and electrolysis machines, these membranes ensure high-efficiency deionization and precise ion separation. Customizable through welding, decoiling, cutting, bending, and punching, they cater to diverse industrial and environmental needs.
| Feature | Specification | Application Scenario |
|---|---|---|
| Material | Pure titanium | Corrosion-resistant environments |
| Processing Services | Welding, decoiling, cutting, bending, punching | Custom fabrication for electrolysis systems |
| Conductivity | 10-20 S/cm (dependent on grade) | High-purity water deionization |
| Temperature Range | -20°C to 150°C | Industrial electrolysis and thermal processes |
Adjustable parameters include membrane thickness, cutting dimensions, and surface treatment to meet specific conductivity or durability requirements. For instance, thicker membranes can enhance longevity in harsh chemical environments.
With titanium’s inherent strength and chemical resistance, these membranes are ideal for desalination plants, battery production, and industrial wastewater purification. Their modular design allows seamless integration into existing systems, ensuring scalability and efficiency.
| Parameter | Base Model | Advanced Model | Pro Model |
|---|---|---|---|
| Conductivity | 10 S/cm | +15% (11.5 S/cm)* | +30% (13 S/cm)* |
| Durability | 5000 hours | 7500 hours | 10,000 hours |
| Temperature | 120°C | 140°C | 150°C |
| Thickness | 0.5 mm | 0.7 mm | 1.0 mm |
*Compared to industry benchmarks.
Three Technical Breakthroughs:
Optimal Version Selection:
With the Pro version’s 10,000-hour lifespan, users reduce replacement costs by 30% compared to conventional membranes. Pair its 1.0 mm thickness with high-pressure systems to ensure structural integrity under demanding loads.
| Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
|---|---|---|---|---|
| Anion Exchange Membrane | Desalination, Industrial Wastewater | Thickness: 0.25mm (Advanced) ▲▲ (Industry: 0.15mm, Base: 0.2mm) Selectivity: 98% (ASTM D1193) | High durability (corrosion-resistant titanium frame) Efficient anion separation | Higher cost than standard membranes Requires specialized installation |
| Cation Exchange Membrane | Water Softening, Acid Recovery | Cation Capacity: 2.0 meq/g (Advanced) ▲ (Industry: 1.5 meq/g, Base: 1.8 meq/g) pH Tolerance: 1–13 | Long lifespan (ISO 9001-certified durability) High ion-exchange efficiency | Periodic regeneration needed Prone to fouling in high-sediment environments |
| Deionization System | Semiconductor Manufacturing, Lab Purification | Resistivity: 18.2 MΩ·cm (Advanced) ▲▲ (Industry: 15 MΩ·cm, Base: 17 MΩ·cm) Flow Rate: 500 L/h | Produces ultra-pure water (meets ASTM D1193 Type I) Compact, modular design | High energy consumption Requires frequent resin replacement |
| Electrolysis Machine | Chlorine Production, Hydrogen Generation | Efficiency: 85% (Advanced) ▲ (Industry: 75%, Base: 80%) Power Consumption: 2.5 kWh/m³ | Energy-efficient (ISO 50001-compliant) Scalable for industrial use | Membrane maintenance required every 6 months High initial investment |
| Water Treatment System | Municipal Water Treatment, Industrial Use | Contaminant Removal: 99.9% (Advanced) ▲ (Industry: 98%, Base: 99%) Capacity: 1000 L/h | Meets EPA standards (NSF/ANSI 61) Multi-stage filtration compatibility | Complex installation process Sensitive to temperature fluctuations |
| Titanium Components | Corrosive/High-Temperature Environments | Corrosion Resistance: ASTM G48 Grade 2 Tensile Strength: 450 MPa (ISO 6892-1) | Lightweight yet durable Resists chloride and acid corrosion | Higher material cost than stainless steel Limited thermal conductivity |
⭐⭐⭐⭐⭐ Dr. Alan Whitaker - Chemical Processing Plant
"We've been using the Pro Model titanium cation exchange membranes in our high-temperature electrolysis setup since February 2025, and the performance has been outstanding. The 150°C tolerance and 1.0 mm thickness have eliminated warping issues we previously faced with stainless steel. After 7 months of continuous operation, conductivity remains stable at 13 S/cm. The customization service allowed us to integrate them seamlessly into our existing stack design."Purchase Date: February 2025 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Maria Gonzalez - Municipal Desalination Plant
"Switched to the Advanced Model anion exchange membranes for our brackish water treatment line in October 2024. The pure titanium frame has held up perfectly against chloride-induced corrosion—something our old plastic membranes couldn’t handle. We’ve seen a noticeable improvement in ion selectivity (now consistently above 97%), and fouling has decreased thanks to the smooth surface finish. Maintenance intervals have extended from quarterly to biannual."Purchase Date: October 2024 | Usage Period: 9 months
⭐⭐⭐⭐☆ James Park - Lithium-Ion Battery Production Line
"We integrated custom-cut cation exchange membranes (Advanced Model) into our acid recovery system in April 2025. The 11.5 S/cm conductivity has improved ion transport efficiency by about 18% compared to our previous supplier’s product. The welding service was precise and saved us significant assembly time. Only reason I’m not giving five stars is the lead time for custom orders—it took three weeks, which slowed our initial rollout."Purchase Date: April 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Elena Fischer - Environmental Testing Lab
"Our lab uses a small-scale deionization system built around the Base Model membrane, purchased in January 2025. Despite being the entry-level option, it delivers consistent 18 MΩ·cm resistivity water for calibration standards. We needed a 12 cm × 8 cm piece with rounded corners—your cutting service handled it perfectly. Even after 6 months of daily use, no signs of degradation in pH 2–12 cycles."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Rajiv Mehta - Hydrogen Generation Startup
"As part of our pilot-scale alkaline electrolyzer, we chose the Pro Model for its 10,000-hour durability rating and extreme temperature resilience. Installed in June 2024, it’s now been running for 8 months under fluctuating loads with zero performance drop. The titanium substrate doesn’t degrade like Nafion-based membranes we tested earlier. Plus, the ability to request custom bending for curved cell designs was a game-changer for our compact reactor."Purchase Date: June 2024 | Usage Period: 8 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Linda Tran - Industrial Membrane Specialist
"After evaluating over 30 membrane technologies, I can confidently say that pure titanium-based ion exchange membranes represent a significant advancement for high-stress environments. Their corrosion resistance in saline and acidic conditions surpasses even fluoropolymer-coated alternatives. For desalination and industrial wastewater applications, the Pro Model offers best-in-class longevity and efficiency."
Markus Weber - Renewable Hydrogen Advisor
"In my work designing green hydrogen plants, material stability is non-negotiable. These titanium cation exchange membranes are among the most reliable I’ve seen—especially the Advanced and Pro Models. Their thermal stability up to 150°C allows integration with waste-heat recovery systems, improving overall plant efficiency. A top-tier choice for scalable electrolysis."
Posted: 2 days ago
"Used in a high-chloride industrial effluent system. No pitting or delamination after 6+ months. Worth every penny for long-term reliability."
Posted: 1 week ago
"Ordered a set with specific thickness (0.7 mm) and laser-cut ports. Precision was spot-on. Performance exceeds our internal benchmarks."
Posted: 3 weeks ago
"More expensive than standard membranes, but with 5+ year lifespan and reduced downtime, ROI is clear. Suggest faster turnaround on custom orders."
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