Hot-Selling Veolia-E-Cell-3X Stack High-Efficiency, Low-Energy Ultra-Pure Water Solution for Power & Biomedicine Industries

In industries such as power generation, energy, biomedicine, and high-precision instrumentation, water quality requirements are incredibly stringent. Whether it's boiler feed water, laboratory water, or cooling water for precision equipment, Veolia’s Veolia-E-Cell-3X Stack ensures every drop meets ultra-pure water (UPW) standards. Designed to meet the need for low conductivity (≤0.1μS/cm) and low silica content, this system offers high efficiency and exceptional reliability for the most demanding applications.


Key Features:
Ø High Desalination Efficiency & Stability
Using homogenous ion-exchange membrane technology, the desalination efficiency exceeds 99%, ensuring consistently high-quality water.
Stable output with conductivity ≤0.1μS/cm, ideal for ultra-pure water (UPW) preparation.
Modular stacked design supports flexible scalability to meet a wide range of water treatment demands.
Ø Low Energy Consumption & Long Lifespan
Optimized current distribution reduces energy consumption by 15%-20% compared to traditional EDI systems.
Membrane stack lifespan can reach 8-10 years depending on feed water quality.
Strong resistance to fouling, compatible with feed water hardness (<1ppm CaCO3) and TOC (<0.5ppm), ensuring long-term reliability.


Ø Smart and Easy Maintenance
Integrated online monitoring interfaces (e.g., conductivity, temperature sensors) enable real-time tracking of key metrics.
Supports remote diagnostics and automated control for easier management and reduced manual intervention.
The modular structure allows for quick replacement, minimizing downtime and improving operational efficiency.

Ideal Industries:
Ø Power & Energy: Perfect for thermal and nuclear power plant boiler feed water that requires low conductivity (<0.2μS/cm) and low silica content.
Ø Biomedicine & Precision Instruments: Highly suitable for biomedicine laboratory clusters, mass spectrometers, and server cooling systems that require ultra-pure water in a compact, easily integrated design.
Ø Sustainable & Energy-Efficient: Whether in large-scale power plants or high-tech labs, the Veolia-E-Cell-3X Stack provides an efficient, cost-effective solution for all your water treatment needs.
Ø Veolia-E-Cell-3X Stack—Engineered for innovation and performance, ensuring high-quality water for all your critical operations while reducing energy costs and minimizing maintenance.


The following are the detailed parameters of Veolia-E-Cell-3X Stack:
Specification/Parameter | Value |
Nominal Flow | 5.0 m³/h (22 gpm) |
Flow Rate Range | 2.3–6.4 m³/h (10–28 gpm) |
Shipping Weight | 165 kg (364 lbs) |
Dimensions | 30 cm x 61 cm x 72 cm (12" x 24" x 29") |
Product Water Quality Guarantees |
|
Resistivity | ≥ 16 MΩ·cm |
Sodium | ≤ 3 ppb |
Silica (SiO₂) | As low as 5 ppb |
Boron | As low as 0.08 ppb |
Typical Removal Efficiencies |
|
Sodium | ≥ 99.9% |
Silica (SiO₂) | Up to 99% |
Boron | Up to 96% |
Operating Parameters |
|
Recovery | Up to 97% |
Voltage | 0–400 VDC |
Amperage | 0–5.2 ADC |
Inlet Pressure | ≤ 6.9 bar (100 psi) |
Pressure Drop | 1.4–2.8 bar (20–40 psi) |
Feed Water Specifications | Limit |
Total Exchangeable Anions (TEA) | ≤ 65 ppm (as CaCO₃) |
Conductivity Equivalent | ≤ 112 μS/cm |
Temperature | 4.4–40°C (40–104°F) |
Total Hardness (as CaCO₃) | ≤ 1.0 ppm |
Silica (SiO₂) | ≤ 1.0 ppm |
Total Organic Carbon (TOC) | ≤ 0.5 ppm |
Total Chlorine | ≤ 0.05 ppm |
Fe, Mn, H₂S | ≤ 0.01 ppm |
Boron | ≤ 1.0 ppm |
pH | 4 to 11 |
Oil & Grease | None detectable |
Particulate | RO permeate |
Oxidizing Agents | None detectable |
Color (APHA) | ≤ 5 APHA |
Notes
l Actual performance may vary depending on site conditions. Reference Winflows projection software for expected performance.
l Inlet pressure is determined by downstream pressure requirements and stack pressure drop.
l At nominal flow and 25°C.
l Verify feed water specifications with Winflows projection software.
l Total Exchangeable Anions (TEA) refers to the concentration of anions in the feed water, including OH-, CO2, and SiO₂.
l Feed water hardness limit is 1.0 ppm as CaCO₃ for counter-current flow operation, but decreases to 0.1 ppm in co-current flow operation.
l Silica limit may decrease with higher flow rates or higher feed water hardness.
l Boron feed level limit varies with silica and resistivity guarantees.
l Feed water must be RO permeate to avoid particulate fouling of ion exchange media.
l APHA is a color standard defined by ASTM D1209.This table should provide a clear and concise overview of the Veolia-E-Cell-3X Stack’s specifications for better understanding and usage.

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