SPECIFICATIONS
Unveiling the prowess of reverse osmosis technology, a cutting-edge innovation recently developed in China. This technology facilitates the separation of water from solutions by utilizing a specially-crafted semi-translucent membrane. By applying pressure greater than the natural osmosis pressure, water is propelled through this membrane, reversing the natural direction of permeation-hence the term 'reverse osmosis.' This advanced process is adaptable to various materials, utilizing specific osmosis pressures to achieve separation, extraction, purification, and concentration. Remarkably, this method requires no heating or phase change, offering significant energy savings compared to traditional methods.
Function |
Drinking water, Bottle water, Industrial water, Commercial water |
System |
Reverse osmosis system, Ultrafiltration system, EDI ultrapure system, Water reuse system, Seawater desalination, Brackish water desalination |
Capacity |
250/500/750/1000LPH, 2TPH, 3TPH, 4TPH, 5TPH, etc |
Voltage |
380V, 220V/50HZ etc; (Power supply can be Customized) |
Power |
2-10 kw |
Raw Water |
TDS ≤ 1000PPM Working temperature: 0 ≤ 45°C Well water, tap water, seawater, salt water, brackish water |
Produced water quality |
Conductivity <10μs/cm Total organic carbon ≤ 0.5mg/L Microorganism <100cfu/ml |
Desalination rate |
96-99% |
Water recovery rate |
50-70% |
Work pressure |
Pretreatment: 0.2-0.4MPa, RO host: 0.8-1.6Mpa |
Material |
FRP tank, Stainless steel 304, PVC pipe, |
Control |
Automatic or manual |
Process |
Quartz sand filter → Activated carbon filter → Water softener → High pressure pump → Ro system → UV → Ozone generator |
![Reverse Osmosis Advanced 1t/H Reverse Osmosis Water Purifier System for Industrial Use](//www.micstatic.com/athena/img/transparent.png)
Applications
- Efficient purification of groundwater and surface water
- Innovative reuse of reclaimed water
- Enhanced pretreatment for RO systems
- Sophisticated pretreatment for seawater desalination
- Clarification and turbidity removal in beverages
About Suoai
SUOAI's Multihole membrane technology is at the forefront of pioneering advances in drinking water purification. Their ingenious design uniquely merges seven capillaries into a single membrane fiber, creating a robust support layer. This groundbreaking innovation not only fortifies the membrane's structural integrity but also significantly elevates its performance and efficiency.
![Reverse Osmosis Advanced 1t/H Reverse Osmosis Water Purifier System for Industrial Use](//www.micstatic.com/athena/img/transparent.png)
Certificate
![Reverse Osmosis Advanced 1t/H Reverse Osmosis Water Purifier System for Industrial Use](//www.micstatic.com/athena/img/transparent.png)
Advantages of Multihole Membranes
1. **Structural Stability**:
- The ingenious design of porous membranes guarantees unparalleled structural stability. Unlike traditional single-hole membranes prone to breakage or damage under prolonged use or extreme conditions, porous membranes integrate multiple capillaries, forming a more resilient unit that effectively mitigates the risk of filament breakage.
2. **Operational Safety**:
- With heightened structural stability, these porous membranes greatly enhance operational safety. This innovation ensures that drinking water purification systems maintain optimal stability, significantly reducing contamination risks due to membrane damage.
3. **Reduced Maintenance and Repair Costs**:
- The enduring structure of porous membranes leads to reduced maintenance and repair frequency. Compared to conventional single-hole membranes, these advancements result in fewer operational issues, consequently lowering maintenance and replacement costs. For operators of drinking water purification systems, this translates into substantial economic benefits by minimizing upkeep expenses.
Impact on the Field of Drinking Water Purification
SUOAI's Multihole membrane technology enhances the efficiency and quality of drinking water purification, paving new pathways for the industry. By curtailing maintenance and repair costs, this technology reduces the overall expense of delivering high-quality drinking water, making it more accessible to broader populations. The superior stability and safety of these membranes provide operators of purification systems with unparalleled confidence and peace of mind.
Conclusion
In conclusion, SUOAI's Multihole membrane technology heralds a revolutionary shift in drinking water purification. With its innovative structural design and outstanding performance, it effectively addresses the challenges of stability and maintenance costs associated with traditional membranes. As this technology continues to be promoted and applied, the future of drinking water purification promises to be brighter, more efficient, and increasingly sustainable.