RF Hollow Fiber Curtain Microfiltration Membrane Module

Negotiable
China
No. 23-2 BOW Building, West Ring Road, Life Science Park Road, Changping District, Beijing
+86 15506331377
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Product Introduction

Curtain-type microfiltration membrane module is the core component of S-MBRU energy-saving membrane bioreactor, made of OriginWater's independently developed fiber-reinforced microfiltration (RF) membrane filaments. The membrane filaments have a unique gradient network membrane pore structure, uniform pore size distribution and excellent performance. The module adopts an open flow channel design with good anti-fouling performance. At the same time, filament arrangement technology is adopted, which is more resistant to pollution. It has won "Beijing Invention Patent" and "China Patent Award" and other awards.

Product Features

  • High Permeate Quality
    Uniform membrane filament pore size distribution, high filtration precision, effluent turbidity below 1NTU;
  • Strong Anti-Fouling Ability
    Unique gradient network membrane pore structure of membrane filaments, open flow channel design of the module, good anti-fouling performance and easy cleaning recovery;
  • Easy Installation and Maintenance
    Membrane box integrated limit navigation frame design, simple installation and disassembly;
  • Long Service Life
    Adopting filament arrangement technology and soft glue protection at membrane filament roots, solving the problem of root filament breakage and providing longer service life.
Product Parameters

Specification Parameters

Membrane Module Model Membrane Area (m²/pc) Packing Weight (kg/pc) Dimensions (mm)
RF-IV 35 20 2138×850×49
RF-V 55 33 2442×890×60
Membrane Material PVDF Type Hollow Fiber Curtain Membrane Module
Membrane Filament Outer Diameter (mm) 2.0/2.2 Average Membrane Pore Size (μm) 0.1
Breaking Stress (N) >200 Permeate Turbidity (NTU) <1
Average Design Flux* (LMH) 18~30 Recommended Operating Temperature (°C) 10~35
Maximum pH Tolerance Range 2~12 Recommended Operating pH Range 6~9
Maximum Transmembrane Pressure Difference (kPa) 45 Limit Transmembrane Pressure Difference (kPa) 80

Note: * Design flux is determined according to water temperature and water quality conditions.