Acros Organics Dowex 50WX8 Ion Exchange Resin 2.5kg Cation Analytical Use
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: A0429882
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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 50WX8, model 335340025, is a strong acid cation exchange resin with high-capacity sulfonic acid groups, designed for efficient cation exchange processes. This robust resin features a 100-200 mesh size, making it ideal for analytical separations, deionization, and sample preparation tasks in laboratory settings. The resin is housed in a plastic bottle, with a beige to brown color indicating its readiness for use. The Dowex 50WX8 resin has a wet volume capacity of 1.7 meq/mL and a water retention capacity of 50 to 58% in H form. Originating from the USA, it is an invaluable tool for scientists and researchers engaged in chemical processes requiring precise and reliable ion exchange capabilities. This new, unused resin offers scratch and dent tolerances, maintaining its functional integrity for lab applications.
Key Features
- High-capacity cation exchange resin
- 100-200 mesh particle size for analytical use
- Suitable for deionization and sample preparation
- Packaging: 2.5 kg in plastic bottle
- Water retention capacity H form: 50-58%
Specifications
- Chemical Identifiers: CAS 11119-67-8, MDL Number MFCD00132726
- IUPAC Name: AmberChrom 50WX8 Ion Exchange Resin
- Form: Moist beads or spheres
- Particle Size: 15% Max. (on 60 mesh, cumulative) 15 % Max. (through 170 mesh)
- Volume Total Capacity (wet volume capacity, H form min.): 1.7 meq/mL
- Color: Beige to Brown
- Solubility in water: Insoluble
- Country of Origin: United States
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
3904.90.00
Harmonized Code Details
Ion-exchange resin in primary forms, referenced under code 3904.90.00. The specification fits due to the polymeric nature and intended use in cation exchange processes.
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