Mixed Matrix Membranes (MMMs)

Mixed Matrix Membranes (MMMs) by Aarvi Energy Filtrex & Environmental Solutions Pvt. Ltd. are advanced hybrid membrane materials developed by incorporating inorganic fillers, nanoparticles, metal-organic frameworks (MOFs), zeolites, carbon materials, or nanostructured additives into polymeric membrane matrices to enhance membrane performance, selectivity, permeability, thermal stability, and separation efficiency. MMMs combine the advantages of polymeric flexibility and inorganic material functionality, making them highly suitable for advanced separation and filtration applications.

These membranes are widely used in gas separation, water treatment, solvent separation, nanofiltration, pervaporation, and membrane distillation research applications in membrane technology, chemical engineering, environmental engineering, nanotechnology, and industrial process industries.

Key Features:

  • Advanced hybrid membrane technology

  • Enhanced permeability and separation selectivity

  • Improved thermal and mechanical stability

  • Superior antifouling and chemical resistance properties

  • High-performance gas and liquid separation capability

  • Uniform distribution of inorganic fillers within polymer matrix

  • Suitable for flat sheet and hollow fiber membrane fabrication

  • Excellent compatibility with advanced membrane processes

  • Customizable membrane composition and structure

  • Reliable performance for laboratory and industrial applications

Technical Specifications:

  • Product Type: Mixed Matrix Membranes (MMMs)

  • Membrane Configuration:

    • Flat Sheet Membranes

    • Hollow Fiber Membranes

  • Base Polymer Materials:

    • PVDF

    • PES

    • PSf

    • PAN

    • PTFE

    • PEI

  • Inorganic Fillers / Additives:

    • Zeolites

    • Metal Organic Frameworks (MOFs)

    • Carbon Nanotubes (CNTs)

    • Graphene Oxide (GO)

    • Silica Nanoparticles

    • Metal Oxide Nanoparticles

  • Membrane Applications:

    • Gas Separation

    • Ultrafiltration (UF)

    • Nanofiltration (NF)

    • Reverse Osmosis (RO)

    • Pervaporation

    • Membrane Distillation (MD)

  • Properties:

    • High Selectivity

    • Enhanced Permeability

    • Improved Fouling Resistance

    • Excellent Mechanical Stability

Applications:

  • Gas Separation Systems

  • Water and Wastewater Treatment

  • Desalination and Water Purification

  • Solvent Separation Processes

  • Membrane Distillation Applications

  • Carbon Capture and CO? Separation Research

  • Pharmaceutical and Chemical Processing

  • Environmental Engineering Research

  • Nanotechnology and Material Science Studies

  • Academic and Industrial R&D Projects

Advantages of Mixed Matrix Membranes (MMMs):

  • Superior separation efficiency and selectivity

  • Enhanced permeability and process performance

  • Improved chemical, thermal, and mechanical stability

  • Suitable for advanced gas and liquid separation systems

  • Supports development of next-generation membrane technologies

  • High fouling resistance and long membrane lifespan

  • Ideal for universities, research institutes, and industrial laboratories


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