Modular Solar Desalination System: 2-20 Ton/Day Capacity with Zero Carbon Emissions and IoT Monitoring
Sustainable solar-powered water desalination system offering 2-20 ton/day capacity with zero operational carbon footprint. Features integrated battery storage for 24/7 operation, IoT monitoring, and significantly lower operating costs ($0.3-1.0/m³). Ideal for off-grid communities, industrial applications, and ESG compliance projects requiring reliable clean water access.
Usage
Seawater desalination
Place of Origin
Anhui, China
Packaging Details
Wooden /Box
weight (kg)
6000 kg
core components
Gearbox, Pump, Gear, Engine, motor, PLC
Material
FRP+Carbon steel, Plywood Case
Product Description
Sustainable Solar-Powered Water Desalination
Our modular solar desalination system harnesses abundant sunlight to provide sustainable clean water solutions. By eliminating fuel costs and reducing carbon footprint, this system offers reliable water access for communities and industries in solar-rich regions.
System Specifications
- Base capacity: 2 tons per day (expandable to 20 tons)
- 24/7 operation with integrated battery storage
- IoT monitoring for remote management and optimization
Key Advantages
- Zero Carbon Footprint: 100% solar-powered operation
- Reduced Operating Costs: No fuel or electricity bills required
- Enhanced Water Security: Climate-resilient independent water source
- Minimal Environmental Impact: Reduced brine discharge with zero air/noise pollution
- Long Service Life: High-quality materials ensure years of reliable performance
- Simple Operation: Resilient technology with easy field maintenance
Performance Comparison
| Characteristic | Traditional Diesel RO | Grid-Powered RO | AquaSol Pure Solar |
|---|---|---|---|
| Operational CO2 Emissions | High (>5 kg/m³ water) | Moderate-High (Grid Intensity) | Zero |
| Energy Source | Fossil Fuels (Diesel) | Grid (Mix Fossil/Renew) | Pure Solar |
| Operating Cost ($/m³) | 1.5−3.0+ | 0.8−1.8+ | 0.3−1.0 (Fuel Cost = $0) |
| Noise Pollution | High | Low-Moderate | Very Low / Silent |
| Setup Complexity | High | High | Low-Moderate |
| Air Quality Impact | Significant | Depends on Grid | None |
| Off-Grid Capability | Poor | None | Excellent |
| Long-Term Sustainability | Low | Medium | High |
Primary Applications
- Corporate ESG and sustainability goal achievement
- Decentralized water infrastructure development
- Climate change impact mitigation on water supply
- Sustainable community and development projects
- Supporting UN Sustainable Development Goal 6 (Clean Water)
- All scenarios requiring clean energy and water access integration
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