The Spectra Por Float-A-Lyzer G2 Dialysis Device offers a convenient, disposable solution for high-precision small-volume dialysis. Equipped with a biotech grade cellulose ester (CE) membrane, it provides 95–98% sample recovery, 99% purity, and less than 10% sample dilution. Ideal for purifying electro-eluted proteins and chromatography fractions, this device is engineered for reliable, contamination-free performance.
Product Features
- Disposable, ready-to-use dialysis device simplifies lab workflow
- Offers 95–98% sample recovery and 99% sample purity with <10% dilution
- Color-coded, leak-proof screw cap enables easy pipette access and resealing
- Biotech grade cellulose ester (CE) membrane with low protein binding and no heavy metals or sulfides
- Precise MWCO of 20,000 Daltons for targeted dialysis applications
- Available in nine MWCOs from 100 to 1,000,000 Daltons
- Cylindrical tubing geometry minimizes sample loss and allows full volume retrieval
- Floatation ring and weighted bottom keep device vertically oriented during dialysis
- Fits multiple devices into one reservoir for efficient batch processing
- Supplied dry with glycerol; includes 12 dialysis units per pack
Warning: This product is not intended for medical, clinical, surgical, or other patient-oriented applications.
Benefits
- Ensures high sample recovery and purity, even with delicate proteins
- Leak-free access for in-process sampling and testing
- Reduces risk of sample dilution and cross-contamination
- Compact design allows simultaneous dialysis of multiple samples
- Optimized for chromatography fractions, electro-eluted proteins, and sensitive biomolecules
Why Choose Spectra Por Float-A-Lyzer G2?
With its ultrapure, low-binding membrane and user-friendly design, the Spectra Por Float-A-Lyzer G2 ensures superior dialysis performance for research and bioprocessing labs. Designed to maximize sample integrity and minimize handling errors, it's the ideal solution for high MWCO applications like large protein complexes and purification tasks requiring rapid, efficient separation.
