CHROMAFIL® MULTI 96 filter plates |
Features |
– 96-well polypropylene plates for simultaneous filtration of 96 samples |
– Advantages of this high-throughput system: Economical by saving time and solvent Use of multi-channel pipettors facilitates liquid transfer steps Readily adaptable to all common automated / robotic handling systems Minimized dead volume (≤ 40 µL) |
– Membrane materials correspond to the respective CHROMAFIL® syringe filters. |
Ordering information | ||
Description | Pack of | REF |
Filter plates with cellulose mixed ester filter elements (0.20 µm) | 1 | 738770.M |
Filter plates with cellulose mixed ester filter elements (0.45 µm) | 1 | 738771.M |
Filter plates with RC filter elements (regenerated cellulose, 0.2 µm) | 1 | 738656.M |
Filter plates with RC filter elements (regenerated cellulose, 0.45 µm) | 1 | 738657.M |
Filter plates with PTFE filter elements (0.2 µm) | 1 | 738660.M |
Filter plates with PTFE filter elements (0.45 µm) | 1 | 738661.M |
Filter plates with PTFE filter elements (1.0 µm) | 1 | 738662.M |
Filter plates with PTFE filter elements (3.0 µm) | 1 | 738663.M |
Filter plates with PE filter elements (20 µm) | 1 | 738655.M |
Filter plates with PE filter elements (50 µm) | 1 | 738659.M |
Filter plates with glass fiber filter elements (nominal 1 µm) | 1 | 738655.2M |
Filter plates with glass fiber filter elements (nominal 3 µm) | 1 | 738658.M |
CHROMABOND® MULTI 96 vacuum manifold for monoblocks, with reservoir tank, vacuum gauge, and control valve, required for filtration with 96-well filter plates (for a detailed description click here) |
CHROMAFIL® filter membranes |
Chemical compatibility of filter materials |
The following table lists the chemical compatibility of our CHROMAFIL® materials. The chemical compatibility depends on several parameters such as time, pressure, temperature and concentration. In most cases, CHROMAFIL® filters will have only short contact with a solvent. | In these cases they may be used despite of limited compatibility. For example, a PTFE filter with PP housing does not liberate any UV-detectable substances during filtration of 5 mL THF, although PP shows only limited resistance towards THF. |
Solvent | Material | ||||||||||
MV | CA | RC | PA | PTFE | H-PTFE | PVDF | PES | PET | GF | PP | |
Acetaldehyde | – | – | o | o | |||||||
Acetic acid, 100 % | – | – | – | – | |||||||
Acetone | – | – | – | – | |||||||
Acetonitrile | – | – | |||||||||
Ammonia, 25 % | – | – | o | – | o | ||||||
Benzene | o | o | |||||||||
n-Butanol | o | ||||||||||
Cyclohexane | o | ||||||||||
Dichloromethane | – | – | – | – | |||||||
Diethyl ether | o | o | o | ||||||||
Dimethylformamide | – | – | o | – | – | ||||||
1,4-Dioxane | – | – | o | – | o | ||||||
Ethanol | – | ||||||||||
Ethyl acetate | – | – | o | ||||||||
Ethylene glycol | o | o | |||||||||
Formic acid, 100 % | – | o | – | o | |||||||
Hydrochloric acid, 30 % | – | – | – | – | – | ||||||
Methanol | – | – | |||||||||
Nitric acid, 65 % | – | – | – | – | o | o | o | o | – | ||
Oxalic acid, 10 % aqueous | – | – | |||||||||
Petroleum ether | |||||||||||
Phosphoric acid, 80 % | – | – | o | – | o | ||||||
Potassium hydroxyde, 1 mol/L | – | – | o | o | o | ||||||
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