Thermo Scientific Dowex 50WX8 Ion-Exchange Resin 200-400 Mesh 2.5KG
Thermo Scientific
Details
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CategoryChemistry
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Dimension6.0in x 6.0in x 13.0in
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SerialLot: A0438364
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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 Thermo Scientific Dowex 50WX8 (H) ion-exchange resin is a highly efficient, strongly acidic cation exchange resin in hydrogen form, designed for ion exchange chromatography and low-pressure liquid chromatography (LPLC) applications. This new and unused resin, originating from the United States, features a 200-400 mesh bead form and an 8% crosslinked styrene-divinylbenzene gel matrix. Its strong acid sulfonic groups enable effective proton exchange, making it ideal for high-resolution separations, water deionization, biochemical processes, and sample purification. The resin boasts a high exchange capacity of ~1.1 meq/mL and is supplied in a 2.5KG bottle with Lot No. A0438364.
Key Features
- Strongly acidic cation exchange resin
- 200–400 mesh bead form
- Hydrogen form (H⁺) ready-to-use
- High cross-linking for stability
- High exchange capacity of ~1.1 meq/mL
- Designed for ion exchange chromatography
Specifications
- Product Name: Dowex® 50WX8, Hydrogen Form
- Functional Group: Sulfonic Acid (-SO₃H)
- Matrix: Styrene-Divinylbenzene (Gel)
- Crosslinking: 8%
- Form: Beads
- Mesh Size: 200–400 mesh
- Capacity: 1.1 meq/mL (wetted bed volume)
- Moisture Content: 50–58%
- Loss on Drying: ~55% at 110°C
- Color/Form: White to off-white beads
- Recommended Technique: LPLC, cation exchange chromatography
- Quality Level: 100
- Storage Conditions: Ambient (sealed container, dry conditions)
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
Harmonized Code 39140000 for ion-exchangers based on polymers in primary forms. This code is appropriate due to the product's nature as an ion-exchange resin used in chromatography and separation processes.
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