Microbiological Monitor Membrane, 47 mm dia, Cellulose Nitrate, Gridded, White with Black Grid, 0.45 µm Pore Size, Sterile, For Use in Colony Counting, Particle Testing and Microscopy
Microfiltration Assembly, 152 mm H, Borosilic More...
Ion Exchange Paper, 46 x 57 cm, 0.27 mm Thick More...
Syringe Filter, 13 mm dia, 0.45 µm Pore More...
Microfiltration Funnel, 1000 ml, 160 H x 350 dia x 90 mm Disc dia, Borosilicate Glass, 300 to 1000 ml in 50 ml Graduation Intervals, 70 mm Prefilter Size, 38.5 cm2 Filter Area, With Stainless Steel Support
Syringe Filter, 0.20 µm, Hydrophobic PTFE, 5 cm dia x 57.4 mm H, 19.6 cm2 Filtration Area, 4 L Process Volume, <0.1 ml Hold-up Volume, 0.12" NPTM Inlet, 0.12" NPTM Outlet Connection, Fluoropore® Media, Hydrophobic Wettability, Non-sterile, Autoclavable, 100/Pack
Syringe Filter, 13 mm Membrane dia, 0.2 µm Pore Size, Hydrophilized PTFE, 23.5 dia x 23.5 mm H, Clear, Polypropylene Housing, 1 to 5 ml Sample Volume, 30 µl Dead Volume, 1.33 cm2 Filtration Area, Labeled, Disposable, Autoclavable
Syringe Filter, 25 mm Membrane dia, 0.45 µm Pore Size, PVDF, 21.5 dia x 29.8 mm H, Clear, Polypropylene Housing, 5 to 100 ml Sample Volume, 80 µl Dead Volume, 4.91 cm2 Filtration Area, Labeled, Disposable, Autoclavable
Automatic Syringe Filter, 1 µm Pore Size, 30 dia x 21.3 mm, 25 mm dia Membrane, Glass Fiber, Gray Polypropylene Housing, 650 kPa Maximum Pressure, 3.55 cm2 Filtration Area, Autoclavable, Luer-Lock and Luer-Slip Connector
Quantitative Filter Paper, 11 cm dia, Cellulose, CFP43 Grade, 0.21 mm Thickness, Ashless Grade Type, 15 to 17 µm Particle Retention in Liquid, 85 g/m2 Nominal Basis Weight, Medium Flow, Acid Washed
Filter Media, 11 cm dia, White, Borosilicate Glass Microfiber, Grade 934-AH®, High Heat, Binderless, 0.43 mm Thickness, 1.5 µm Particle Retention, 64 g/m2 Nominal Basis Weight, 47 sec Filtration Speed, 550°C Max. Temperature
Hydrophilic Mixed Cellulose Ester Membrane, 25 mm dia, White, 0.22 µ Pore Size, Non-sterile, Autoclavable, Easy to Handle, Less Cracking and Fracturing Than Traditional CN Membranes