Description
All natural filter housings help maintain high standards of purity and performance required in critical contamination control systems and processes. These housings can also be used for a variety of other applications where purity, quality, filtration and economy are required.
– All housings have 3/4″ (19mm) NPT inlet and outlet threads
– Compatible with most Pall, Millipore, Gelman, Brunswick, Satorius, Filterite and Nuclepore membrane cartridges
– All Natural Housing
– 10 Housing, 10″ Long
– 3/4” NPT Inlet / Outlet
– All Natural Sump with all natural Cap
– An economical solution to fluoropolymer, stainless steel or Teflon housings
– Pure polypropylene components – no fillers, colorants, plasticizers or lubricants
– Ultra smooth contact surfaces prevent bacterial adhesion and build-up
– Resists DI water and other inorganic solutions
– Viton o-rings provide dependable sealing- Standard 1 Housings per Case- Replaces the obsolete 150150
Applications
– Deionized and reagent grade water
– Electronic grade chemicals (see chemical compatibility chart below)
– Reagent grade chemicals
– Pharmaceutical grade solvents
– Reaction solvents for cosmetic, pharmaceutical, or polyester productions
– Freons (TF, 113)
– Electronic etching solutions
– Magnetic coatings (tape, disc, card)
– Reverse osmosis or ultrafiltration final filters
Materials of Construction
– Housing: All Natural Polypropylene
– Cap: All Natural Polypropylene
– O-Ring: Viton
– Max. Temp: 100 °F (37.8 °C)
– Max Pressure: 100 psi (6.9) bar
Caution: Do not install where system will be exposed to direct sunlight
Caution: Protect against freezing to prevent cracking of the filter and water leakage
Housing Specifications and Performance Data
| Model | Cartridge Sealing | Maximum Dimensions | Inital Pressure Drop (psi) @ Flow rate (gpm) |
| 10 | DOE | 12-1/2″ x 5-1/8″ | 1 psi @ 10 gpm |
| 12 | 222 | 15-3/8″ x 5-1/8″ | 1 psi @ 10 gpm |
| 20 | DOE, 222 | 29-1/8″ x 5-1/8″ | 1 psi @ 10 gpm |
| Pure Poly | PVDF | ||||
| Semiconductor Processing Materials | 68 °F (20 °C) |
140 °F (60 °C) |
68 °F (20 °C) |
140 °F (60 °C) |
Viton |
| Acetic Acid 99.7% (135 °F/51.7 °C Max) | R | C | R | R | NR |
| Acetic Acid 50% | R | R | NR | R | R |
| Acetone 99.5% | R | R | R | NR | NR |
| Ammonium Fluoride 40% | R | R | R | R | R |
| Ammonium Hydroxide 10% | R | R | R | R | R |
| Hydrochloric Acid 37% | R | R | R | R | R |
| Hydrofluoric Acid 49%, 52% | R | R | R | R | R |
| Hydrogen Peroxide 50% | R | C | R | R | R |
| Methanol 99.9% (140 °F/60 °C Max) | R | R | R | R | NR |
| Methylene Chloride 99.8% (105°F/40.6°C Max) | R | NR | R | NR | R |
| Methyl Ethyl Ketone | R | C | NR | NR | NR |
| N-Butyl Acetate 99.0% | NR | NR | C | NR | NR |
| Nitric Acid 60% | R | NR | R | C | R |
| Phosphoric Acid 86% | R | R | R | R | R |
| Potassium Hydroxide 45% | R | R | R | R | NR |
| 2-Propanol 99.5% | R | R | R | C | R |
| Sodium Hydroxide 50% | R | R | R | R | R |
| Sulfuric Acid 90% | R | R | R | R | R |
| Tetrachloroethylene | NR | NR | R | R | R |
| Water-Deionized | R | R | R | R | R |
R = Resistant C = Conditionally Resistant NR = Non-Resistant









