LabExact Grade CFP3 Qualitative Cellulose Filter Paper 0.32 mm Thick 5.5 cm Dia. 6 um 100 PK CFP3-055
Grade CFP3 Qualitative Cellulose Filter Paper is a high-performance media ideal for various applications, including sample preparation, filtration, and analytical testing. Its unique properties, such as high absorbency and resistance to clogging, enable it to handle large sample volumes with ease. With a retention of approximately 6 um, this filter paper ensures reliable results in applications like environmental monitoring, water quality testing, and pharmaceutical research. Its 0.32 mm thickness and 5.5 cm diameter make it suitable for a range of laboratory settings, from routine testing to specialized research.
Top product features:
- This media does not clog as easily as the other qualitative cellulose types which allows for much higher sample volume usage.
- This media also demonstrates very high levels of absorbency permitting the media to be used as a sample conveyance substrate.
- Grade CFP3 is virtually identical to CFP1 but twice as thick resulting in a significantly slower flow rate with a retention of approximately 6 um.
Top product applications:
- Biotechnology
- Laboratory
- Quality control
This item is NOT returnable.
Grade cfp3 is virtually identical to cfp1 but twice as thick resulting in a significantly slower flow rate with a retention of approximately 6 um. This media does not clog as easily as the other qualitative cellulose types which allows for much higher sample volume usage. This media also demonstrates very high levels of absorbency permitting the media to be used as a sample conveyance substrate.Additional Information
- UNSPSC: 40161502
- Brand: I.W TREMONT CO INC
- Color: White
- Package Quantity: 1
- Country of Origin: US
- FOB Origin: NJ
- Ships by: PARCEL
- Comes in a kit: No
- Newly added to catalog: No
- Item is on Clearance: No
- Contains Hazardous Materials: No
- CA Proposition 65 Applies: No
- Package Length: 1.00
- Package Width: 3.00
- Package Height: 3.00
- Package Weight: 0.38