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Allure Acrylamide LC Column

  • Stable retention times for hundreds of matrix injections.
  • Faster equilibration times allow for method optimization and shorter analyses.
  • Accurate low ppt-level limits for acrylamide in drinking water.
  • Meet or exceed EN 16618:2015 and U.S. FDA procedure requirements for food applications.
  • Reliable, long-lasting performance injection to injection and column to column.

Performance comparison: Allure Acrylamide columns vs. porous graphitized carbon columns for food applications.
Large Volume Injections: Meet part-per-trillion (ppt) limits for acrylamide in drinking water.

Documentation and Instructions Sheets

Allure Acrylamide LC Column

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Catalog # Clear All
9167552 50 mm ea. 2.1 mm 5 µm Select Deselect

Catalog # 9167552

Length
50 mm  
Units
ea.  
ID
2.1 mm  
Product Name
Allure Acrylamide LC Column  
Particle Size
5 µm  
Pore Size
60 Å  
916756E 150 mm ea. 3.0 mm 5 µm Select Deselect

Catalog # 916756E

Length
150 mm  
Units
ea.  
ID
3.0 mm  
Product Name
Allure Acrylamide LC Column  
Particle Size
5 µm  
Pore Size
60 Å  

The Allure Acrylamide LC column provides targeted acrylamide retention as well as improved isolation from matrix interferences to aid in low-level detection and quantitation in food or drinking water matrices. The Allure Acrylamide column is stable enough to last for hundreds of injections of difficult food matrices, such as potato chips/crisps or coffee, without significant loss of acrylamide peak shape or retention. The 150 x 3.0 mm column format accommodates large volume injections, which are used to reach the extremely low limits required for acrylamide in drinking water. The proprietary ligand and bonding process result in much greater stability and longer lifetime compared to carbon-based stationary phases, and an embedded polar group ensures compatibility with 100% aqueous mobile phases. The Allure Acrylamide column is ideal for analyzing acrylamide in drinking water, especially if large volume injections are used to increase sensitivity, and it also provides dependable performance for EN 16618:2015 and U.S. FDA draft procedures for food applications.
Particle: 5 μm, spherical
Pore Size: 60 Å
Carbon Load: proprietary
End-cap: no
Surface Area: 450 m2/g
pH Range: 2.5 to 8
Maximum Temperature: 80 °C