Advanced Containerized Seawater Desalination Plant for Brackish Water
| Customization: | Available |
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| After-sales Service: | Provided |
| Warranty: | 1 Year |
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Basic Info.
- Model NO.
- XYD-5
- Type
- Wastewater Treatment Plant
- Method
- Combined Treatment
- Usage
- Home, Hospital
- Capacity
- 100-200 M³/Day
- Salt Rejection Rate
- 98.5%
- Recovery Rate
- 30-40%
- Operating Pressure
- 4.0-6.5 MPa
- Operating Temperature
- 3-40 °C
- Power Supply
- 380 V
- Installed Power
- 2.6-19.8 Kw
- Automation Level
- Fully Automatic
- Water Quality Standard
- GB5749-2006
- Certifications
- CE
- Transport Package
- Wooden Box
- Specification
- Container, Stainless Steel+SS304
- Trademark
- New YUDA
- Origin
- Guangxi, China
- HS Code
- 8421219090
- Production Capacity
- 800 Sets Per Month
Packaging & Delivery
- Package Size
- 250.00cm * 115.00cm * 200.00cm
- Package Gross Weight
- 650.000kg
Product Description
Advanced Containerized Seawater Desalination Plant for Brackish Water
The Advanced Containerized Seawater Desalination Plant for Brackish Water is a containerized RO-based solution designed to convert seawater or high-salinity brackish water into safe drinking water. Featuring dual-membrane technology, variable-frequency high-pressure pumps, and energy recovery devices, the system ensures stable output, low energy consumption, and long service life. Its modular design allows easy installation, mobility, and space efficiency, while automation and optional remote monitoring enable simple and reliable operation. Widely applied in island resorts, coastal hotels, and emergency supply scenarios, it provides a sustainable and cost-effective freshwater source that meets strict international drinking water standards.
Advanced Containerized Seawater Desalination Plant
The Advanced Containerized Seawater Desalination Plant for Brackish Water, independently developed by NEW YUDA Environmental Technology Co., Ltd., is an upgraded solution compared with traditional desalination devices, integrating multiple technological innovations to achieve a high degree of automation, energy efficiency, and reliability.
Our containerized RO desalination system is widely used in island resorts, coastal hotels, emergency relief, small municipal supplies, and brackish water treatment. It features high desalination efficiency, stable performance, low energy consumption, and simple operation. With a modular container design, compact structure, and customizable capacity, the system ensures continuous safe freshwater supply in challenging marine environments.
It has the following characteristics:
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High desalination rate - dual-membrane process removes 98.5% of salts and impurities;
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Energy-saving design - variable-frequency high-pressure pumps with energy recovery devices;
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Modular containerized unit - compact footprint, easy transport, fast installation;
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High automation - PLC control with optional remote monitoring and smart APP management;
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Durable construction - corrosion-resistant materials, suitable for harsh coastal climates;
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Customizable solutions - tailored capacities (100-200 m³/day) to meet different hotel and resort requirements.
Advanced Containerized Seawater Desalination Plant Process
The seawater desalination system begins with intake and pre-treatment, where filters remove suspended solids and impurities. Pre-treated water is pressurized by variable-frequency high-pressure pumps and fed into RO membrane modules, the system's core, achieving up to 98.5% salt removal. An energy recovery device reuses brine pressure, reducing power consumption. The produced freshwater undergoes post-treatment such as pH adjustment, remineralization, and disinfection to meet drinking water standards, while concentrated brine is safely discharged. Fully automated with PLC control and optional remote monitoring, the process ensures efficient, stable, and reliable freshwater supply for island hotels and coastal applications.
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High desalination efficiency - dual-membrane RO technology achieves 98.5% salt removal, ensuring stable freshwater output.
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Energy-saving design - equipped with variable-frequency high-pressure pumps and energy recovery devices to minimize power consumption.
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Compact containerized system - modular, space-saving design allows easy transport, quick installation, and flexible deployment.
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Fully automated operation - PLC control with optional remote APP monitoring ensures reliable, safe, and unattended performance.
Applications
Widely used in island resorts, coastal hotels, emergency relief, and small municipal water supply projects.
Technical Parameters
| Model | Production Capacity (m³/day) | Power (kW) | Size (m) |
| XYD-100 | 100 | 40 | 9.00*2.43*2.89 |
| XYD-150 | 150 | 50 | 12.19*2.43*2.89 |
| XYD-200 | 200 | 56 | 12.19*2.43*2.89 |









1) National Hi-tech Enterprise, Guangxi Famous Brand, Class A Credit Enterprise
2) More than 60 intellectual property rights, including trademarks, software copyrights, utility and invention patents.
3) Strong technical ability, cooperate with Tsinghua University, Tianjin University, Tokyo University,etc.
4) More then 15 years experiences in the industry
5) General contracting qualification of municipal public works construction. Professional contracting qualification of environmental protection engineering










1. What can you buy from us?
We provide seawater desalination systems, RO water treatment plants, dosing systems, and other integrated environmental protection equipment.
2. What service can we provide?
We offer equipment customization, design consultation, on-site installation guidance, technical training, after-sales support, and optional remote monitoring service.
3. What's your delivery time?
Standard models can be delivered within 15-30 days; customized systems usually require 30-40 days depending on specifications.
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Voltage and Power Requirements - What are the required operating voltage, frequency, and available power supply?
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Inlet and Outlet Connection - What are the preferred connection methods and pipe specifications?
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Raw Water Characteristics - What are the source water conditions (salinity, turbidity, temperature, corrosiveness, or any special contaminants)?
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Application Scenario - Where will the system be installed (indoor/outdoor)? What is the ambient temperature range? Are there any explosion-proof or special protection requirements?
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Control and Integration - Do you require manual operation, fully automatic control, or integration with an existing PLC system?
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