Acros Organics Dowex 1X8 Ion-Exchange Resin 100-200 Mesh 2.5Kg Bottle
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
Acros Organics Dowex 1X8 Ion-Exchange Resin is crafted for laboratory separations and analytical applications. It features a strongly basic anion-exchange resin, contained in a polystyrene-divinylbenzene matrix with quaternary ammonium functional groups. This new item, in its unused condition, presents a 100-200 mesh size, providing exceptional surface area and rapid exchange kinetics. It's ideal for separation of anions, purification processes, and analytical ion-exchange methods. The resin exhibits a chloride (Cl⁻) form with a water retention capacity of 39 to 45%, and the wet volume capacity is greater than 1.2 meq/mL. This 2.5Kg bottle of tan to white beads, made in the United States and identified by Lot A0430512, is perfect for detailed chemical analysis in labs. The physical condition may present minor cosmetic imperfections such as scratches or dents.
Key Features
- Strongly basic anion-exchange resin
- Polystyrene-divinylbenzene matrix
- 100-200 mesh particle size
- High surface area and rapid exchange kinetics
- Chloride (Cl⁻) form
Specifications
- CAS: 12627-85-9
- Molecular Formula: C29H34ClN
- Molecular Weight: 432.05 g/mol
- MDL Number: MFCD00132718
- Physical Form: Beads
- Particle Size: 15% Max. (on 60 mesh, cumulative) 15 % Max. (through 170 mesh)
- Volume Total Capacity wet volume capacity, Cl form (meq/mL): > 1.2
- Water Retention Capacity Cl form: 39 to 45%
- Color: Tan to White
- IUPAC Name: 1,4-diethenylbenzene 4-ethenyl-N,N,N-trimethylanilinium ethenylbenzene chloride
- 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
39140000
Harmonized Code Details
The chosen harmonized code 39140000 pertains to ion-exchangers based on polymers, which aligns with the description of ion-exchange resin materials.
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