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Supelco

Metal Packed GC Column (General Configuration)

phase SP®-1000, 0.1%, matrix 80/100 Carbopack C support, L × O.D. × I.D. 6.0 ft (1.8 m) × 1/8 in. × 2.1 mm

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About This Item

UNSPSC Code:
41115710
NACRES:
SB.54

material

stainless steel column

parameter

0-225 °C temperature (isothermal or programmed)

technique(s)

gas chromatography (GC): suitable

L × O.D. × I.D.

6.0 ft (1.8 m) × 1/8 in. × 2.1 mm

matrix

80/100 Carbopack C support

matrix active group

SP®-1000 phase, 0.1%

column type

packed GC

compatibility

for use with General Configuration

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General description

Packed column made up of stainless steel are basically employed when higher carrier gas flow rates are employed as they can sustain elevated pressure. Stainless steel columns are usually washed with dilute hydrochloric acid, then with water followed by methanol, acetone, methylene dichloride and n-hexane in order to remove any corrosion products and traces of lubricating agents.
An economical metal column should be used for less demanding applications where the inertness of glass is not required. This column is of a general configuration, and can be carefully bent to fit most instruments.

Application

Stainless steel gas chromatographic column packed with SP-1000 on Carbopack C support was used for the detection and separation of perfluorocarbons in reservoir gases using the gas chromatograph equipped with electron capture detector system (GC/ECD).

Legal Information

SP is a registered trademark of Sigma-Aldrich Co. LLC

Kit Components Also Available Separately

Product No.
Description
SDS

  • 11820Coated GC Packing, phase SP®-1000, 0.1%, matrix 80/100 Carbopack C support, bottle of 15 gSDS

Storage Class Code

11 - Combustible Solids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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Introduction to Analytical Gas Chromatography.
Scott RPW.
Science, 102-108 (1997)
C U Galdiga et al.
Fresenius' journal of analytical chemistry, 367(1), 43-50 (2001-03-03)
A new method for the analysis of perfluorocarbon tracers (PFTs) in reservoir samples based on adsorption/thermal desorption in combination with NICI-GC/MS is presented. The tracer compounds were trapped in tubes filled with a carbon molecular sieve and in a two-step

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