500 m³/day Containerized BWRO System with 70% Recovery Rate and 1.04 kWh/m³ Energy Consumption
Product Details:
| Place of Origin: | China |
| Brand Name: | Fenigal/OEM |
| Certification: | ISO 14001, CE ,ISO 9001 |
| Model Number: | BWC500 |
Payment & Shipping Terms:
| Minimum Order Quantity: | 1 Set |
|---|---|
| Price: | Negotiable |
| Packaging Details: | Standard Export Wood Crate/Carton or Naked wrapped by film |
| Delivery Time: | 15~30 days |
| Payment Terms: | T/T,Western Union,Paypal etc. |
| Supply Ability: | 200 set per month |
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Detail Information |
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| Usage: | Industrial And Commercial Water Treatment | Installation Method: | Containerized / Mobile Design |
|---|---|---|---|
| Rated Recovery Rate:: | 70% | Rated Power: 15.6kW: | 15.6kW |
| Highlight: | 500 m³/day Containerized BWRO System,70% Recovery Rate Brackish Water Reverse Osmosis System,1.04 kWh/m³ Energy Consumption Containerized Reverse Osmosis System |
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Product Description
The BWC500 Containerized Brackish Water Reverse Osmosis (BWRO) System is a high-efficiency desalination solution designed for large-scale water production with minimum energy consumption.
Installed in a standard 40-ft container, the BWC500 delivers a rated production capacity of 500 m³/day (22 m³/h) while achieving an industry-leading low energy consumption of only 1.04 kWh/m³.
The system is equipped with 25 units of 8-inch RO membranes, a high-pressure pump designed for continuous-duty operation, and advanced corrosion-resistant materials including duplex stainless steel and UPVC. These features ensure stable performance, long service life, and reliable operation under demanding water conditions.
With a fully automated PLC control system and HMI touchscreen interface, the BWC500 enables real-time monitoring, intelligent diagnostics, and remote operation, making it an ideal solution for critical water infrastructure projects.
| Parameter | Unit | Value |
|---|---|---|
| Rated Product Flow | m³/h | 22 |
| Daily Production Capacity | m³/day | 500 |
| Rated Product Flow | L/s | 6.11 |
| Rated Recovery Rate | % | 70 |
| Rated Feed Flow | m³/h | 31.43 |
| Maximum System Pressure | barg | 20 |
| RO Membrane Specification | inch | 8 * 40 |
| RO Membrane Quantity | pcs | 25 |
| Container Size | ft | 40 |
| Dry Weight | ton | 12 |
| Rated Power | kW | 44.4 |
| Installed Power | kW | 70.2 |
| Energy Consumption | kWh/m³ | 1.04 |
| Power Input | - | 3PH, 380V ±10%, 50Hz |
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Industry-Leading Energy Efficiency
Ultra-low energy consumption of only 1.04 kWh/m³, one of the most energy-efficient BWRO systems in its capacity range, with optimized hydraulic design for reduced operating costs. -
Heavy-Duty & Corrosion-Resistant Materials
Constructed with high-performance materials including duplex stainless steel and UPVC piping components, providing excellent resistance against corrosion, scaling, and harsh operating environments. -
Fully Automated Intelligent Control
PLC-based automatic control system with HMI touchscreen interface, real-time system monitoring, and remote operation and fault diagnostics capability. -
Modular & Expandable Design
Standard 40-ft containerized configuration for easy transportation and rapid installation, with multiple units connectable in parallel to increase production capacity.
- Municipal water supply
- Power plant cooling water treatment
- Large-scale agricultural irrigation
- Mining operations
- Industrial process water supply
| Feature | Benefit |
|---|---|
| 500 m³/day Capacity | High-volume water production from a single container |
| 70% Recovery Rate | Improved water utilization and reduced wastewater discharge |
| 1.04 kWh/m³ Energy Consumption | Lower operating costs and improved efficiency |
| 40-ft Container Design | Compact, modular, and easy to deploy |
| Full Automation | Reliable unattended operation and remote monitoring |
| Expandable Configuration | Flexible capacity expansion for future demand |
The BWC500 provides a compact, energy-efficient, and fully automated BWRO solution for municipalities, industries, agriculture, and infrastructure projects requiring dependable freshwater production.





