Industrial Double-Stage RO + EDI Ultra-Pure Water Production System
Our Industrial Double-Stage RO + EDI Ultra-Pure Water Production system delivers consistently high-quality water for pharmaceutical, laboratory, and industrial applications. By combining double-pass reverse osmosis (RO) with electrodeionization (EDI) technology, this system ensures ultra-pure water with minimal impurities, optimal conductivity, and reliable long-term performance.
The ultrapure water system begins with raw water stored in a tank and pumped through a series of filters to remove large particles, chlorine, and hardness. It then passes through a high-pressure pump and a double-pass reverse osmosis (RO) system to remove dissolved impurities. The water is further purified using electrodeionization (EDI) for continuous ion removal. After final polishing with a precision filter, the ultrapure water is stored for use in industrial and pharmaceutical applications.
How Double-Stage RO Electrodeionization Ultra-Pure Water Production?
The double-stage RO module is the first line of defense in producing ultrapure water. It efficiently removes:
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Dissolved salts and ions
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Organic compounds
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Particulates and microorganisms
By having a two-pass RO process, the system significantly reduces the ionic load before entering the EDI module, ensuring superior water quality and system stability.
Features of Our IndustrialUltra Pure Water Process
| Feature | Description |
|---|---|
| High-Purity Water Output | Produces ultra-pure water with resistivity up to 18.2 MΩ·cm and low TOC levels. |
| Real-Time Monitoring | Monitors conductivity, TOC, and flow in real-time for consistent quality. |
| Compact, Modular Design | Space-saving layout with corrosion-resistant stainless steel construction. |
| Energy Efficient | Optimized RO and EDI processes reduce energy consumption while maintaining high performance. |
Why Choose Our EDI Ultra-Pure Water Production Solution?
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Advanced double-stage RO + EDI technology ensures unmatched water quality
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Reliable, low-maintenance operation for industrial and pharmaceutical use
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Customizable design to meet specific flow rates, water quality requirements, and footprint constraints
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Full compliance with international water quality standards