High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment

Product Details
Customization: Available
Membrane Type: Hollow
Type: UF
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  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
  • High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
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Basic Info.

Model NO.
dizzer XL 0.9MB 60W
Weight
50kg
Housing Material
U-PVC
Membrane Material
Pes
Flow Direction
Inside-out
Capacity
2000~6000lph
Sealing Material
Epoxy Resin
Production Phase
One Months
Transport Package
Carton
Specification
0.5cbm
Trademark
SUOAI
Origin
Quanzhou, Fujian, China
HS Code
3926909090
Production Capacity
5000

Product Description


SPECIFICATIONS
High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
Applications
  1. Groundwater/Surface Water Purification
  2. Reclaimed Water Reuse
  3. Pretreatment of RO System
  4. Pretreatment of Seawater Desalination
  5. Beverage Clarification and Turbidity Removal


High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment EquipmentHigh-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment EquipmentHigh-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment EquipmentHigh-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment EquipmentHigh-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment EquipmentHigh-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment

About Suoai

SUOAI's Multihole Technology membrane technology has ushered in remarkable innovation in the realm of drinking water purification. With its avant-garde design, the company ingeniously integrates seven capillaries into a single membrane fiber, creating a robust support layer. This pioneering approach not only fortifies the membrane's structural stability but also dramatically elevates its performance.

High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
Certificate
High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment
High-Performance Seven-Hole Ultrafiltration Membrane for Water Treatment Equipment

Advantages of Multihole Membranes

1. **Structural Stability**:
- The innovative design of these porous membranes ensures a more stable structure. Unlike conventional single-hole membranes, which can easily break or become compromised under prolonged use or extreme conditions such as high pressure and temperature, these multihole membranes forge a solid unit through the fusion of multiple capillaries, thereby effectively minimizing the risk of filament breakage.

2. **Operational Safety**:
- Owing to their enhanced structural stability, these porous membranes markedly boost operational safety. Consequently, drinking water purification systems can function with increased stability, minimizing the potential risks of contamination due to membrane damage.

3. **Reduced Maintenance and Repair Costs**:
- The sturdy structure of multihole membranes diminishes the need for frequent maintenance and repairs. In contrast to traditional single-hole membranes, multihole designs are less susceptible to issues during extended operation, thereby substantially cutting down on maintenance and replacement expenses. For operators of drinking water purification systems, this translates into significant cost savings and improved economic returns.

Impact on the Field of Drinking Water Purification

SUOAI's Multihole membrane technology not only amplifies the efficiency and quality of drinking water purification but also paves new paths for the industry at large. By slashing maintenance and repair costs, this groundbreaking technology reduces the overall expenditure of drinking water purification, thereby enhancing the accessibility of premium-quality drinking water to a broader audience. Furthermore, the heightened stability and safety of porous membranes instill greater confidence and reassurance in operators of drinking water purification systems.

Conclusion

In essence, SUOAI's Multihole membrane technology has spearheaded a revolutionary shift in the domain of drinking water purification. With its distinctive structural design and unparalleled performance, it adeptly addresses the challenges of stability and maintenance costs associated with traditional single-hole membranes. As this technology continues to proliferate and find wider applications, we are optimistic that the future of drinking water purification will indeed be more luminous and sustainable.

 

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