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Rt-Alumina BOND/CFC Columns (fused silica PLOT)

  • Improved inertness for chlorofluorocarbon (CFC) compounds.
  • Highly selective alumina-based column, separates most CFCs.
  • High retention and capacity for CFCs.
  • Temperature range: -60 to 200 °C.
A GC column phase cross-reference is also available.
Documentation and Instructions Sheets

Rt-Alumina BOND/CFC Columns (fused silica PLOT)

Catalog #

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19763 30 m ea. 0.53 mm 10 µm -60 to 200 °C Select Deselect

Catalog # 19763

30 m  
0.53 mm  
Product Name
Rt-Alumina BOND/CFC  
df (Film Thickness)
10 µm  
Temp Limits
-60 to 200 °C  

Restek Rt-Alumina BOND columns are highly selective for C1–C5 hydrocarbons and separate all saturated and unsaturated hydrocarbon isomers above ambient temperatures. The reactivity of the aluminum oxide stationary phase is minimized by deactivation with inorganic salts, such as KCl or Na2SO4, to improve column response for polar unsaturates, like dienes, and the column's sensitivity (or response) ensures linear and quantitative chromatographic analysis for these compounds. Strong bonding minimizes particle generation and release, which allows valve switching with minimal risk to the injection or detection systems. And because they are stable up to at least 200 °C, Rt-Alumina BOND columns can be regenerated to restore full efficiency and selectivity by conditioning at their maximum temperature if water is adsorbed. High capacity and loadability give you exceptionally symmetrical peaks, making these columns ideal for volatile hydrocarbon separations at percent levels, as well as impurity analyses at ppm concentrations. Restek Rt-Alumina BOND PLOT columns are manufactured on fused silica tubing; select phases are also available on metal MXT tubing.

To ensure reproducible retention times and predictable flow behavior column to column, each Rt-Alumina BOND column is extensively tested. A hydrocarbon test mix confirms proper phase retention and selectivity. To calculate k (retention or capacity factor), which is a measure of phase retention, 1,3-butadiene is used, while selectivity is measured using retention indices for propadiene and methyl acetylene. The resolution of trans-2-butene and 1-butene is also verified and, to measure efficiency, plates per meter are checked using 1,3-butadiene.

We do not recommend recoiling PLOT columns as this may cause particles to dislodge from the side of the tubing.

The Alumina BOND/CFC adsorbent is ideal for retaining volatile halogenated compounds, especially CFCs (chlorinated fluorocarbons) like Freon products. It offers high selectivity, allowing a wide range of CFC isomers to be resolved at above ambient temperatures. The Rt-Alumina BOND/CFC column is thoroughly deactivated to reduce the reactivity of alumina. Even though there is still some residual reactivity for some mono- or di-substituted CFCs, the majority of these compounds can be accurately quantified from mainstream processes or in impurity analyses.