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  • UF、NF、RO
  • UF、NF、RO
  • UF、NF、RO
  • UF、NF、RO
  • UF、NF、RO
    UF、NF、RO
    UF、NF、RO
    UF、NF、RO
    UF、NF、RO

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    Product Introduction:
    Organic membranes are classified by pore size or molecular weight cut-off into microfiltration (MF), ultrafiltration (UF), nanofiltration (NF), and reverse osmosis (RO) membranes. Tubular and spiral-wound configurations are the most widely used in industrial applications.
    Product Details


     Ultrafiltration (UF) Membrane – Product Overview

    Ultrafiltration membranes are microporous filtration membranes with uniform pore size, typically rated below 0.01 μm. By applying appropriate pressure on one side of the membrane, solute molecules smaller than the pore size can be sieved out, enabling the separation of particles with molecular weight greater than 500 Daltons and particle size larger than 10 nm. UF membranes are among the earliest developed polymer separation membranes, with industrial UF systems commercialized as early as the 1960s. They can separate target products of different molecular weights, thereby replacing traditional purification processes such as activated carbon decolorization, resin impurity removal, crystallization, and extraction, achieving decolorization, impurity removal, and product fractionation. In terms of membrane element configuration, the most widely used types are spiral-wound and tubular membranes.

    UF Membrane Element – Basic Parameters

    ParameterSpecification
    Molecular Weight Cut-Off (MWCO)1,000 D – 800 KD
    Membrane Pore Size1 – 100 nm
    Common Model Sizes1812, 2540, 4040, 8040
    Membrane MaterialsPolyethersulfone (PES), Polyvinylidene Fluoride (PVDF), Sulfonated Polyethersulfone, Polyamide, Sulfonated Polysulfone

    UF Membrane Element – Operating Control Parameters

    (To be specified based on application)

    Product Advantages

    1. High thermal and chemical stability

    2. Imported raw materials ensure high quality

    3. Dead-leg-free design resists fouling

    4. Easy membrane module replacement

    5. Various membrane element specifications available

    6. High packing density with low cost per unit membrane area

    Applications

    1. Clarification and concentration of fermentation broths in pharmaceutical and biochemical industries

    2. Whey protein and gelatin concentration

    3. Industrial water pretreatment and purified water sterilization/impurity removal

    4. Production of sterile water and water for injection in medical applications

    5. Separation and purification of traditional Chinese medicine (TCM) extracts

    6. Refining of low-alcohol liquor and clarification/filtration of wine

    7. Oil-water separation

    Membrane housings can be custom-designed to match the elements.


    Nanofiltration (NF) Membrane – Product Overview

    Nanofiltration membranes have a molecular weight cut-off between reverse osmosis and ultrafiltration membranes, typically ranging from 200 to 800 Daltons. Rejection characteristics: divalent and multivalent anions are preferentially rejected, while monovalent ion rejection depends on feed concentration and composition. NF is commonly used for removing organic matter and color from surface water, reducing hardness and partially removing dissolved salts from groundwater, and for extraction and concentration of substances in food and biopharmaceutical production. The typical operating pressure range is 3.5–30 bar.

    NF Membrane Element – Key Parameters

    ParameterSpecification
    Molecular Weight Cut-Off100 D – 800 D
    Operating Temperature4 – 55°C
    pH Range2 – 11
    Maximum Inlet Pressure< 4.1 MPa
    Recommended Operating Pressure0.8 – 1.6 MPa
    Common Model Sizes1812, 2540, 4040, 8040
    Membrane MaterialPolyamide

    We offer spiral-wound NF membrane elements with precise MWCO ratings, featuring compact construction and optimized surface-area-to-volume ratios. By using different feed spacer thicknesses (13–120 mil), the feed channel width can be adjusted to accommodate various feed viscosities. To meet special industry requirements, we can select the most suitable NF membrane based on customer process conditions, system characteristics, and technical specifications.

    Common NF Membrane Performance Parameters

    ParameterDescription
    FluxGFD (gallons per square foot per day); LMH (liters per square meter per hour)
    Permeate Flow RateGPD (gallons per day); GPM (gallons per minute); m³/d (cubic meters per day)
    System Recovery RateW% = (Permeate Flow / Feed Flow) × 100%
    Solute Rejection RateX% = (1 – Concentration in Permeate / Concentration in Concentrate) × 100%
    Solute Transmission RateY% = (Concentration in Permeate / Concentration in Concentrate) × 100%
    Volume Concentration Ratio (VCR)Initial Feed Volume / Final Concentrate Volume
    Osmotic Pressure (π)π = i · M · R · T (where i = ion molar concentration, R = gas constant, T = thermodynamic temperature)

    Product Advantages

    1. Precise molecular weight cut-off

    2. Easy membrane module replacement

    3. Dead-leg-free design resists fouling

    4. High-quality imported membrane materials – high flux, excellent stability

    5. Various membrane element specifications available

    6. High packing density with low cost per unit membrane area

    Applications

    1. Water softening

    2. Chemical wastewater treatment

    3. Precious metal recovery

    4. Removal of harmful substances from drinking water

    5. Dye decolorization or concentration, heavy metal removal, acid purification

    6. Concentration and purification of proteins, amino acids, and vitamins in food, beverage, and pharmaceutical industries


    Reverse Osmosis (RO) Membrane – Product Overview

    Reverse osmosis membranes are the core components of reverse osmosis systems. They are synthetic semipermeable membranes designed to mimic biological semipermeable membranes, capable of rejecting particles larger than 0.0001 μm. As the most precise membrane separation product, RO membranes effectively reject all dissolved salts and organic compounds with molecular weight greater than 100, while allowing water molecules to pass through.

    RO membranes are typically made from polymer materials such as cellulose acetate, aromatic polyhydrazide, and aromatic polyamide. Surface pore diameters generally range from 0.5 to 10 nm, and permeability is closely related to the membrane's chemical structure. Some polymer materials exhibit excellent salt rejection but low water permeability, while others with more hydrophilic groups offer faster water permeation. An ideal RO membrane must achieve a balanced performance in both permeability and salt rejection.

    RO membrane structures are classified into asymmetric and homogeneous membranes. Currently, the most widely used membrane materials are cellulose acetate and aromatic polyamide. Membrane configurations include hollow fiber, spiral-wound, plate-and-frame, and tubular types. RO membranes are used in separation, concentration, and purification unit operations, primarily in pure water production and water treatment industries.

    RO Membrane Applications

    • Brackish water treatment

    • Seawater desalination

    • Boiler feedwater purification

    • Ultrapure water production

    • Drinking water treatment

    • Surface water purification

    • Municipal wastewater reuse

    • Swimming pool water filtration


    Qisheng Membrane Separation Technology Co., Ltd. offers high-performance imported organic membrane elements, membrane modules, and organic membrane accessories. Based on customer process requirements, system characteristics, and technical specifications, we are pleased to recommend the most suitable ultrafiltration, nanofiltration, or reverse osmosis membrane solutions for your specific application.


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