Veolia Electrodeionization EDI Stack Modules
2.0-4.5 M³/hr Veolia E-Cell MK-3 EDI Stack For Medium-Scale Ultrapure Water Production
2.0-4.5 M³/hr Veolia E-Cell MK-3 EDI Stack For Medium-Scale Ultrapure Water ProductionThe Veolia E-Cell MK-3 EDI Stack delivers reliable, chemical-free ultrapure water production for medium-flow industrial applications. With an optimized capacity range of 2.0 to 4.5 m³/hr, this compact stack
2.0-4.5 M³/hr Veolia E-Cell MK-3 EDI Stack For Medium-Scale Ultrapure Water Production
The Veolia E-Cell MK-3 EDI Stack delivers reliable, chemical-free ultrapure water production for medium-flow industrial applications. With an optimized capacity range of 2.0 to 4.5 m³/hr, this compact stack balances performance with space efficiency, making it perfect for system upgrades or new installations where footprint matters.
Engineered for seamless integration, the MK-3 serves as a versatile solution across pharmaceuticals, microelectronics, and power generation. Its standardized design ensures straightforward compatibility with existing E-Cell systems while providing enhanced operational consistency.

Key Advantages:
Medium-flow design: 2.0–4.5 m³/hr capacity range
Space-efficient footprint: 30×61×54 cm
Zero chemical consumption for regeneration
Consistent high-purity output
Direct replacement for legacy E-Cell models
Choose the MK-3 for cost-effective purification that scales with your operational needs. Request custom quotation and technical specifications for your project requirements.
Key Specifications
| Attribute | Value |
|---|---|
| Maximum water production (m³/hr) | 4.5 |
| Minimum water production (m³/hr) | 1.6 |
| Recovery | Up to 96% |
| Shipping Weight | 100 kg (220 lbs) |
| Hardness (ppm as CaCO₃) | <1.0 |
| Sodium | ≤ 3 ppb |
| Boron | As low as 0.08 ppb |
| pH Range | 4 to 11 |
| Color | ≤ 5 APHA |
| Resistivity | ≥ 16 MOhm-cm |
| Application | Industrial High Purity Water Preparation |
Veolia E-Cell® EDI Technology
Industrial-grade continuous electrodeionization technology utilizing DC electric fields to drive ion migration, combining ion-exchange resins and selective membranes for continuous impurity removal.
Core Technology Advantages
In-situ electrochemical regeneration: Eliminates chemical acid/base regeneration
Three-channel design: Counter-current operation reduces scaling risks (verified pressure drop: 1.4-3.4 bar)
Chemical-free operation: Complies with ISO 14001 standards
Compact modularity: MK-series depth 29-74 cm for space efficiency
Thermal sanitization: Supports 85°C hot-water sanitization (≥160 cycles), meeting cGMP
Energy optimization: 20% reduced energy consumption vs conventional EDI (0-400 VDC)
Detailed Technical Specifications
| Parameter | Value |
|---|---|
| Nominal Flow | 3.4 m³/h (15 gpm) |
| Flow Rate Range | 1.7 - 4.5 m³/h (7.0 - 20 gpm) |
| Dimensions (W x H x D) | 30 cm x 61 cm x 54 cm (12" x 24" x 22") |
| Product Water Quality | Resistivity ≥ 16 MOhm-cm, Sodium ≤ 3 ppb, Silica ≤ 5 ppb, Boron ≤ 0.08 ppb |
| Removal Efficiencies | Sodium ≥ 99.9%, Silica up to 99%, Boron up to 96% |
| Operating Parameters | Voltage 0-300 VDC, Amperage 0-5.2 ADC, Inlet Pressure ≤ 6.9 bar |
Typical Applications
Ultrapure water for semiconductor chip rinsing and microelectronics
Demineralized boiler feed water for power plants and industrial facilities
Quality Assurance
CE, RoHS, CSA, and EAC certified
ISO 9001 and ISO 14001 compliant manufacturing
UKCA certified
Halal certified by IFANCA®
Note: Actual performance may vary based on site conditions. Refer to Winflows Prediction Software for detailed performance verification.
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