
0615E UF Membrane Memstar
Introduction:UF modules are made with high strength hollow fiber PVDF with 0.03 μm pore size. It offers high tolerance to chemical cleaning. Ultrafiltration (UF) provides excellent retention performance to particles, suspended solids, colloidal material, bacteria and viruses.
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Product Introduction
The 0615E Ultrafiltration (UF) Membrane Module is a premium industrial-grade membrane designed as a direct and fully compatible equivalent to the Memstar 0615E. Engineered for professional water treatment systems, this module combines robust design, reliable performance, and cost-effective operation. Utilizing advanced hollow‑fiber technology crafted from polyethersulfone (PES), it delivers top-tier contaminant removal and long-term durability.
Ideal for municipal and industrial use, the 0615E is perfectly suited for potable water production, wastewater recycling, reverse osmosis pretreatment, and industrial process water recovery. This membrane adheres to international quality standards, ensuring high-quality output and seamless drop-in integration into existing Memstar setups.
Working Principle
The 0615E UF membrane operates on the outside‑in dead‑end filtration principle using hollow-fiber membranes. Here’s how it works:
1. Feedwater Inlet: Raw or pre-treated water enters the module and flows around the hollow-fiber exterior.
2. Filtration: Under low transmembrane pressure (TMP), water passes through the 0.02 µm to 0.03 µm membrane pores. Suspended solids, bacteria, viruses, and macro-molecules are retained.
3. Permeate Collection: Clean water passes through the fiber lumen and exits the module.
4. Fouling Control: Periodic backwash and chemical cleaning (CIP) are used to maintain flux and prolong membrane life.
This method ensures high-quality, reliable permeate with efficient operation and minimal energy usage.
Key Features
· ✅ Memstar 0615E Equivalent
Fully interchangeable with Memstar systems in size, materials, and performance.
· ✅ PES Hollow Fibers
Durable and resilient against chemicals, abrasion, chlorine, and biofouling.
· ✅ Nominal Pore Size (~0.02–0.03 µm)
Offers excellent microbial and particulate rejection for safe drinking water or reuse.
· ✅ Hydrophilic Membrane Surface
Reduces fouling, maintains flux, and lowers cleaning frequency.
· ✅ Efficient Low‑Pressure Operation
Maintains high throughput with reduced TMP and energy consumption.
· ✅ Backwash & CIP Support
Compatible with automated cleaning cycles to restore permeability.
· ✅ Long Service Life (3–7 Years)
With proper maintenance, delivers years of dependable performance.
· ✅ Global Standards Certified
NSF/ANSI 61 compliance and ISO‑certified manufacturing for safe, sustainable use.
Technical Specifications
Parameter | Specification |
Model | 0615E UF Membrane – Memstar Equivalent |
Membrane Type | Hollow‑Fiber UF |
Material | Polyethersulfone (PES) |
Nominal Pore Size | 0.02–0.03 µm |
Effective Membrane Area | 61 m² |
Filtration Mode | Outside‑In |
Operating Pressure (TMP) | 0.1–0.3 MPa (14–43 psi) |
Maximum Pressure | 0.4 MPa |
Operating Temperature | 5–45°C |
pH Range (Operation) | 4–10 |
pH Range (Cleaning) | 2–11 (short‑term up to 13) |
Backwash Pressure | Up to 2.0 bar |
Maximum Flux | Up to 150 LMH |
Membrane Length | 1524 mm (60″) |
Housing Material | ABS / FRP / PVC‑U |
Connection Type | Standard clamp or flange |
Air Scour Flow | 6–8 Nm³/h/module |
Typical Service Life | 3–7 years |
Certifications | NSF/ANSI 61, ISO 9001 |
Applications
1. Municipal Drinking Water
Provides pathogen-free, low turbidity water from surface or groundwater sources.
2. Industrial Process Water
Supplies clean water to industries like electronics, food & beverage, textiles, and pharmaceuticals.
3. Wastewater Reuse
Enables tertiary treated water to be repurposed for irrigation, cooling, or process use.
4. RO Pretreatment
Protects sensitive reverse osmosis membranes by reducing SDI and particle load.
5. Desalination Pre-Treatment
Serves as an effective filter in seawater or brackish water pretreatment for RO.
6. Cooling Tower & Boiler Feed Water
Reduces scaling and biofouling in thermal utility systems.
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