SPECIFICATIONS
Reverse osmosis technology is a modern high technology developed recently in China.Reverse osmosis is to separate water from solution after it permeates the specially-made semi-transparents membrane through exerting a pressure that is higher than the osmosis pressure on the sultion.As this process is reverse to the natural permeation direction,it is called reverse osmosis.According to different osmosis pressures of varous materials,the process of reverse osmosis with a pressure higher than the osmosis pressure can be used to reach the purposes of separation,exiraction ,puritication and concentration of a certain solution.It does not need heating and there is no phase changing process.Therefore,it saves more energy than traditional process.
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 |
Applications
- Groundwater/surface water purification
- Reclaimed water reuse
- Pretreatment of RO system
- Pretreatment of seawater desalination
- Beverage clarification and turbidity removal
About Suoai
SUOAI's multihole membrane technology has brought significant innovation to the field of drinking water purification. Through a unique design, the company successfully combined seven capillaries into one membrane fiber, forming a tight support layer. This innovation not only enhances the structural stability of the membrane but also significantly improves its performance.
![3t/H Reverse Osmosis Water Filter System Equipment with Good RO Membrane Water Purification Machine](//www.micstatic.com/athena/img/transparent.png)
Certificate
![3t/H Reverse Osmosis Water Filter System Equipment with Good RO Membrane Water Purification Machine](//www.micstatic.com/athena/img/transparent.png)
Advantages of Multihole Membranes
1. **Structural Stability**:
- The design of porous membranes makes their structure more stable. Traditional single-hole membranes may easily break or become damaged under long-term operation or extreme conditions such as high pressure and high temperature. However, porous membranes, through the combination of multiple capillaries, form a more solid unit, effectively reducing the risk of filament breakage.
2. **Operational Safety**:
- Due to their higher structural stability, porous membranes significantly improve safety during operation. This means that drinking water purification systems can run more stably, reducing the potential risk of contamination caused by membrane damage.
3. **Reduced Maintenance and Repair Costs**:
- The stable structure of porous membranes reduces the frequency of maintenance and repairs. Compared to traditional single-hole membranes, porous membranes are less likely to experience problems during long-term operation, thereby lowering the costs of maintenance and replacement. This is a significant advantage for operators of drinking water purification systems, as reduced maintenance costs can directly translate into improved economic benefits.
Impact on the Field of Drinking Water Purification
SUOAI's Multihole membrane technology not only enhances the efficiency and quality of drinking water purification but also brings new directions for the entire industry. By reducing maintenance and repair costs, this technology helps lower the overall cost of drinking water purification, making high-quality drinking water accessible to more people. Additionally, the stability and safety of porous membranes provide greater confidence and assurance to operators of drinking water purification systems.
Conclusion
In summary, SUOAI's Multihole membrane technology has brought revolutionary changes to the field of drinking water purification. Through its unique structural design and exceptional performance, it successfully addresses the issues of stability and maintenance costs associated with traditional single-hole membranes. With the continuous promotion and application of this technology, we have reason to believe that the future of drinking water purification will be even brighter and more sustainable.