| Phase Description |
Application |
| SupelMIP™
SPE Tubes |
Molecular imprinted polymers
for the highly selective extraction of trace analytes in difficult sample
matrices |
| Supelclean™ Sulfoxide SPE |
Trace
level extraction of PCBs and other aromatic compounds from difficult oil
samples under normal-phase conditions |
| Supelclean
Coconut Charcoal SPE |
Extraction
of nitrosamines in drinking water (US EPA Method 521) |
| Supelclean
ENVI-Carb Plus SPE |
Spherical carbon particles
engineered for the extraction of highly polar compounds from aqueous samples
such as drinking and ground water. |
| Discovery
DSC-MCAX |
Mixed-mode cation exchange
for superior selectivity/sample cleanup when extracting basic compounds
(most pharmaceuticals) from biological fluids (e.g., plasma, urine, etc.) |
| Discovery
Ag-Ion |
Silver Ion SPE for the fractionation
of cis-trans isomers and other FAMEs |
| Polymer
SAX Rezorian™ Cartridge |
Strong cation and anion
exchanger on a styrene base particle. Offers much higher ion-exchange capacity
Polymer SCX Reversible Tube than silica based ion-exchangers |
| Discovery
DPA-6S |
Polyamide resin that adsorbs
polar compounds containing multi –OH and –COOH groups. Useful
for extracting polyphenolics and other natural compounds (e.g., flavenoids,
chlorophyll, humic acid, etc.) from plant extracts |
Supelclean ENVI-18
and –8 DSK SPE Disks |
Provides fast flow rates
for processing large volumes of water samples (≥ 0.5 L). Used in EPA 500
series methods – Drinking Water |
| Supelclean
ENVI-Carb |
Extreme affinity for polar
compounds in aqueous samples and water miscible organic extracts.
Commonly used in pesticide analysis of food samples |
Multi-layer
Supelclean
SPE Products (ENVI-Carb™, SAX, PSA, NH2) |
Developed to provide superior
cleanup when conducting multi-residue pesticide analysis in food/agricultural
matrices |
| Supelclean
LC-4 (wide pore) |
Used for desalting proteins/peptides
and other macromolecules |
| Dual
Layer Florisil/Na2SO4 |
For total petroleum hydrocarbon
index according to European Method EN9377-2 |