Ultrafiltration Membrane Module
High precision: nominal pore size of 0.03μm, uniform pore size, water turbidity < 0.1 NTU, SDI15 < 2.5; High flux: large channel component structure coupled with high flux membrane fibers, designed flux can reach 120 LMH; High water efficiency: precise fixed-length design, wastewater volume < 5%;
Key words:
Immersed curtain ultrafiltration membrane module with supporting membrane fibers; high water quality: pore size 0.04μm, effectively removes colloids, suspended solids, microorganisms, bacteria, and viruses; high strength: fiber-reinforced composite membrane technology, membrane fiber strength can reach 600N, ensuring stable water production; long service life: made from PVDF raw materials, resistant to oxidation and acid-alkali cleaning, with a lifespan exceeding 5 years; suitable for industrial water supply and drainage, reclaimed water reuse, and zero discharge applications.
Ultrafiltration Membrane Module
High water quality: Pore size of 0.04μm, effectively removes colloids, suspended solids, microorganisms, bacteria, and viruses; High strength: Fiber-reinforced composite membrane technology, with membrane filament strength reaching up to 600N, ensuring stable water production; Long service life: Made from PVDF raw materials, resistant to oxidation and acid-alkali cleaning, with a lifespan exceeding 5 years; Suitable for industrial water supply and drainage, reclaimed water reuse, and zero discharge, etc.
Ultrafiltration membrane module
Uniform Pore Size: Narrow pore size distribution in the membrane, acting as an absolute physical barrier to ensure the production of high-quality water; Long Lifespan: Reinforced PVDF hollow fiber membrane with a lifespan of >8 years and stable water production; High Packing Density: Unique fiber packing technology with a compact structure, increasing the packing density by 35% compared to conventional components; High Efficiency and Energy Saving: High flux, capable of operating under conditions with flux >30LMH; Easy Maintenance: Advanced mechanical fiber arrangement technology significantly reduces fiber entanglement, minimizing the need for cleaning and maintenance.