Acros Organics Dowex 1X8 Ion-Exchange Resin 2.5Kg Laboratory Separation
Acros Organics
Details
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CategoryChemistry
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Dimension6.0in x 6.0in x 13.0in
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SerialLot: A0430512
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Shipping TypeFedEx Ground
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ManufacturingDoes Not Apply
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Voltage / HertzDoes Not Apply / Does Not Apply
Description
The Acros Organics Dowex 1X8 is a 100–200 mesh strongly basic anion-exchange resin contained in a 2.5Kg bottle. Built with a polystyrene-divinylbenzene matrix and featuring quaternary ammonium functional groups, this resin offers a high surface area for rapid exchange kinetics. It is ideal for laboratory separations, analytical ion-exchange methods, and purification processes, particularly in handling the separation of anions. The resin is in its chloride (Cl⁻) form and is characterized by a high wet volume capacity of over 1.2 meq/mL and a water retention capacity ranging from 39 to 45%. It sports a tan to white appearance and its chemical composition includes C29H34ClN with a molecular weight of 432.05 g/mol. This product comes in new condition, although it may bear minor cosmetic imperfections. It is a reliable choice for those requiring efficient and effective ion-exchange capabilities.
Key Features
- 100-200 mesh particle size
- Polystyrene-divinylbenzene matrix
- Quaternary ammonium functional groups
- High surface area for fast kinetics
- Ideal for laboratory anion separations
Specifications
- Chemical Identifiers: CAS 12627-85-9
- Molecular Formula: C29H34ClN
- Molecular Weight: 432.05 g/mol
- MDL Number: MFCD00132718
- Synonym: dowex 1x2 50-100 cl, dowex 1x8 50-100 cl
- Physical Form: Beads
- Particle Size: 15% Max. (on 60 mesh, cumulative), 15 % Max. (through 170 mesh)
- Volume Total Capacity: >1.2 meq/mL
- Water Retention Capacity: 39 to 45%
- Color: Tan to White
- Quantity: 2.5 kg
Weight
Imperial: 8.4 Pounds
Metric: 3.81 Kilograms
Shipping Dimensions
Imperial: 7.2 lb x 7.2 lb x 15.6 lb
Metric: 18.29 cm x 18.29 cm x 39.62 cm
Harmonized Code
3909.40
Harmonized Code Details
3909.40 - Resins within ion-exchange resins, in primary forms. Selected because the product is an ion-exchange resin.
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