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  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
  • Ultrapure Water Treatment Continuous Electrodeionization EDI Module
Ultrapure Water Treatment Continuous Electrodeionization EDI Module

Ultrapure Water Treatment Continuous Electrodeionization EDI Module

  • 1 - 99 Pieces
    $600
  • 100 - 499 Pieces
    $595
  • >= 500 Pieces
    $590

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 100 pieces)
Graphic customization(Min.Order: 100 pieces)

Ultrapure Water Treatment Continuous Electrodeionization EDI Module

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Continuous Ultrapurification: Removes ions, minerals, and impurities from water using electrodeionization (EDI) technology, producing ultrapure water for critical applications.
  • Material Efficiency: Constructed with corrosion-resistant stainless steel and durable resin-filled chambers, ensuring longevity and reliable performance in demanding environments.

Key features

  • 1. Material Technology

  • With a corrosion-resistant stainless steel and resin construction, you can ensure durable performance in harsh water treatment environments. Stainless steel resists chemical erosion, while resin components enhance ion-exchange efficiency, outperforming traditional plastic-based systems*.

  • 2. Modular Design for Seamless Integration

  • With a ribbed structural design and modular ports, you can easily integrate the EDI module into existing water treatment systems, offering 30% faster setup compared to non-modular units*. The robust steel frame ensures stability during continuous operation.

  • 3. High-Purity Output Performance

  • With continuous electrodeionization technology, you can achieve ultra-pure water up to 18.2 MΩ·cm resistivity—20% higher than conventional ion-exchange methods*. This ensures consistent purity for critical applications like semiconductor manufacturing.

  • 4. Scenario-Specific Adaptability

  • With industrial-grade design, you can deploy this module in high-demand settings like pharmaceutical plants or data centers, supporting uninterrupted operation for 24/7 use*. Its compact size reduces spatial requirements by 15% versus legacy systems*.

  • 5. Certified Safety and Compliance

  • With NSF/ANSI 61 and ISO 9001 certifications, you can guarantee compliance with global water quality and safety standards, ensuring trust in regulated industries*.

Product details

Ultrapure Water Treatment Continuous Electrodeionization EDI Module

The Ultrapure Water Treatment Continuous Electrodeionization (EDI) Module combines advanced materials and modular design to deliver high-purity water efficiently. Constructed from corrosion-resistant stainless steel and reinforced with ion-exchange resin, this device ensures reliable performance in demanding industrial and laboratory settings. Its ribbed surface enhances heat dissipation, while versatile ports enable seamless integration into water treatment systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialStainless steel housing, resin coreCorrosion-resistant environments
Heat DissipationRibbed surface designHigh-temperature industrial processes
Connectivity6 standard fluid/electrical portsModular system integration
Flow Rate1.5–3.0 m³/h (adjustable)Continuous water treatment lines
Purity OutputResistivity ≥ 18.2 MΩ·cmSemiconductor manufacturing

Customization guide

Adjust rib spacing and port configurations to optimize heat exchange and flow rates for specific applications. Resin type and capacity can be customized to target unique ion removal requirements.

Get inspired

Achieve ultrapure water with minimal chemical regeneration. Ideal for labs, semiconductor plants, and pharmaceutical facilities where consistent water quality is critical.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Flow Rate1.5–2.5 m³/h+15% (3.0 m³/h)+30% (4.0 m³/h)*
Energy Efficiency0.8 kWh/m³0.65 kWh/m³0.5 kWh/m³
Chemical ResistanceStandard+20% (acid/alkali)Triple industry norm
Resin Capacity10 kg15 kg20 kg

Supplier's note

  1. Technical Breakthroughs:

    • Stainless Steel Housing: Reduces corrosion risks by 40% compared to carbon steel.
    • Ribbed Heat Dissipation: Achieves 25% faster thermal equilibrium than flat-surface models.
    • High-Capacity Resin: Delivers 99.9% ion removal efficiency in a single pass.
  2. Optimal Version Selection:

    • Base Model: Suitable for small-scale labs or facilities with standard purity needs.
    • Advanced Model: Ideal for medium-sized industries requiring acid/alkali resistance (e.g., chemical plants).
    • Pro Model: Designed for high-throughput applications like semiconductor fabrication, where tripled chemical resistance and 4.0 m³/h flow ensure uninterrupted operation.

With the Pro Model’s tripled chemical resistance, you can safely process aggressive chemicals while maintaining ultrapure water output. Pair its high resin capacity with the ribbed design to achieve energy savings of 37.5% versus traditional systems.

Note: The Pro Model’s flow rate is 40% higher than industry benchmarks.

Frequently asked questions

  • Which Ultrapure Water Treatment EDI Module suits small-scale pharmaceutical labs?

  • How to clean the resin chambers in an EDI module for optimal performance?

  • Stainless Steel vs. Plastic: Which material is better for EDI modules in corrosive environments?

  • Can the Ultrapure EDI Module be customized for high-flow industrial use?

  • Is the resin in the EDI module FDA-approved for food-grade water treatment?

  • What makes the Ultrapure EDI Module energy-efficient compared to traditional systems?

  • Does the EDI module require pre-treatment for feed water quality?

  • How does the Ultrapure EDI Module ensure consistent water purity over time?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Reverse Osmosis (RO) SystemsDesalination, household water purificationSemi-permeable membranes (98% salt rejection, ASTM F838)Low energy consumption, compact designRequires pre-treatment, generates brine waste (tooltip: "High salt concentration byproduct")
Ion Exchange Resin SystemsWater softening, laboratory applicationsResin beads (99% ion removal, ISO 6199)High purity for small volumes, no chemical additivesFrequent resin replacement (tooltip: "Costly and labor-intensive maintenance")
EDI Industry StandardPharmaceutical, semiconductor manufacturing304 Stainless Steel (ASTM A276), 30 m³/h flow rateContinuous operation, no chemical regenerationHigher initial cost (tooltip: "Base model lacks advanced durability upgrades")
Our Base EDI ModuleMedium-scale industrial plants316L Stainless Steel (ASTM A276), 35 m³/h flow rate (▲ vs Industry Standard)Improved corrosion resistance, 17% higher capacity (tooltip: "Handles 500+ hours continuous use")Moderate upfront cost (tooltip: "Less efficient than Advanced for large-scale use")
Our Advanced EDI ModuleLarge-scale data centers, power plants316L Stainless Steel, 50 m³/h flow rate (▲▲▲ vs Industry Standard), 99.99% purity66% higher capacity, energy-efficient (tooltip: "15% lower power consumption"), ultra-pure waterHighest cost (tooltip: "Premium resin and advanced sensors")
Distillation UnitsLab-grade purity, emergency water supplyHigh-grade glass (ISO 3585), 99.9% puritySimple design, no chemical additivesEnergy-intensive (tooltip: "3x higher energy use than EDI"), slow process

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