NPCERAM | Industrial Filtration Solutions

Tubular and multichannel modules-SMO

NPC-SMO

Stainless-steel ceramic membrane modules by Nano Palayesh Ceram (NPC) are designed for demanding liquid filtration processes requiring high mechanical strength, chemical durability, and long-term operational stability. These modules house single-channel and multichannel ceramic membrane elements and operate under crossflow filtration, making them ideal for harsh industrial environments where polymeric housings fail.

They support various membrane materials (Alumina, Zirconia, SiC) and withstand aggressive chemicals, high solids, and thermal cycling while maintaining stable flux and long membrane lifetime.

MF (more than 100nm)
UF (10- 100nm)
UF (10- 100nm)
Five Tabs Template
  • Stainless steel pressure vessel construction (304, 316, Duplex, Super Duplex).
  • Compatible with single-channel and multichannel ceramic membrane elements.
  • Supports MF, UF and NF ceramic membranes.
  • Crossflow filtration design for stable flux and fouling resistance.
  • Multiple sealing materials: EPDM, PTFE, Silicon, Rubber.
  • Flange, clamp, or custom nozzle interface options.
  • Model Code: NPC-SMO-XXX
  • Filtration Mode: Crossflow
  • Operating TMP: 0.5 – 3 bar
  • Crossflow Velocity: 2 – 5 m/s
  • Pressure Vessel Range: 0–1.0 / 1.6 / 2.5 / 4.0 MPa
  • Element Diameter: 25, 30, 40, 50 mm
  • Element Length: 500, 1000, 1200 mm
  • Element Quantity per Module: 1 to 241 pcs
  • Compatible Membrane Materials: Alumina, ZrO₂, SiC
  • Water and wastewater treatment and reuse systems.
  • Oil, gas, refinery, and petrochemical wastewater filtration.
  • Chemical process liquid clarification and catalyst recovery.
  • Mining, metallurgy, and mineral processing streams.
  • Metalworking fluids, coolants, and cutting-oil recovery.
  • Textile and dyeing wastewater color and surfactant removal.
  • Pulp and paper whitewater clarification and fiber recovery.
  • Industrial process-water and utility water treatment.

These stainless-steel modules provide superior mechanical durability and chemical resistance compared to polymeric housings, ensuring long-term operation in aggressive industrial environments. Their crossflow design reduces fouling, maintains stable filtration flux, and enables efficient cleaning (CIP), resulting in lower maintenance costs and extended membrane lifespan even under high solids and variable feed conditions.

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