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Characteristics
Housing Material :Acrylic and Polypropylene Membrane Materials  : Cellulose Acetate, Nitrocellulose, Nylon, PE, PES, PTFE, PVDF, Regenerated Cellulose Membrane Diameter : 13 mm Housing Diameter: 18 mm Effective Filtration Area: 0.76 cm² Pressure Bar: 5 Sterile: No Inlet /outlet: FLL/MLL-MLS -
Housing Material: Acrylic Ultrasonically welded Membrane Materials:Cellulose Acetate, PES, PVDF Membrane Diameter: 13 mm Housing Diameter: 18 mm Effective Filtration Area: 0.76 cm² Pressure Bar: 5 Sterile: No Inlet /outlet: FLL/MLL-MLS Holdup Volume: <50 microliter Maximum Operating Temperature: 50°C / 122°F Maximum Operating Pressure: 80 psi Sterile: Yes -
Membrane Materials: Cellulose Acetate, Glass Fiber, Nitrocellulose, Nylon, PES, Polyethylene, PTFE, PVDF, Regenerated Cellulose Housing Diameter: 33 mm Membrane Diameter: 25 mm Effective Filtration Area: 4.6 cm² Housing Materials: Acrylic, Polypropylene Ultrasonically welded Inlet / Outlet: FLL / MLL-MLS Holdup Volume: <100 microliter Maximum Operating Temperature: PP Abluo - 90°C / 194°F, Acrylic Abluo 50°C / 122°F Maximum Operating Pressure: 80 psi -
Effective Filtration Area: 4.6 cm² Sterile: Yes Inlet/outlet: FLL/MLL-MLS Housing Material: Acrylic Ultrasonically welded Membrane Materials: Cellulose Acetate, Nylon, PES, PVDF Membrane Diameter (mm): 25 Housing Diameter (mm): 33 Holdup Volume: <100 microliter Maximum Operating Temperature: 50°C / 122°F Maximum Operating Pressure: 80 psi -
GVS CA Filtration membranes are composed of pure cellulose acetate that is internally supported by an inert polyester web. This web gives each membrane exceptional strength to prevent cracking, tearing, breaking and distortion when handled or creased. The resulting membrane has dimensional stability that can withstand autoclaving or steam sterilizing leaving the membrane unaffected in temperatures up to 274ºF (135ºC). The exceptional dimensional strength and low binding characteristics of GVS CA Filtration Membranes provide higher throughputs than competitive offerings and reduce the number of filter changes needed during proteinaceous solution filtering.

