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  • 24317 - SP®-2380 Capillary GC Column

24317 Supelco

SP®-2380 Capillary GC Column

L × I.D. 100 m × 0.25 mm, df 0.20 μm

  •  eCl@ss 32119290



Related Categories All Gas Chromatography Columns, Analytical/Chromatography, Capillary GC Columns, Capillary GC Columns, by name, Gas Chromatography (GC),
Quality Level   100
material   fused silica
Agency/Method   meets requirements for USP G48
parameter   ≤25-275 °C temperature (isothermal or programmed)
Beta value   313
df   0.20 μm
application(s)   gas chromatography (GC): suitable
L × I.D.   100 m × 0.25 mm
matrix active group   Stabilized; poly(90% biscyanopropyl/10% cyanopropylphenyl siloxane) phase
Featured Industry   Agriculture
Chemicals and Industrial Polymers
Food and Beverages
column type   capillary highly polar


General description

Capillary GC column is also known as open tubular column. The carrier gas flows through the central aperture and is unrestricted throughout the length of the column.

Application: A highly polar cyanosiloxane column commonly used for separation of geometric (cis/trans) fatty acid methyl ester (FAME) isomers as a group. Also useful when a highly polar general purpose column with good thermal stability is required.
USP Code: This column meets USP G48 requirements.
• Stabilized
• Poly(90% biscyanopropyl/10% cyanopropylphenyl siloxane)
Temp. Limits:
• Subambient to 275 °C (isothermal or programmed)


• SP®-2380 Capillary Column may be used for determination of fatty acid composition in crude oil in capillary gas chromatography, used along with normal and reverse-phase high-performance liquid chromatography (HPLC) in order to study the content and composition of tocopherols, sterols, and phospholipids in soybean oils derived from genetically-modified soybeans.
• It was used for the identification of fatty acid methyl esters from mammalian samples by fast gas chromatography.
• It was used for determining the hydrogenation level and the level of isomerisation development during the hydrogenation process of edible oils by capillary gas chromatography.
• It was also used in gas chromatography equipped with flame ionization detector (FID) for analysing the cytotoxicity of fatty acids from seed oils containing conjugated linolenic acids (CLN) on mouse tumor and human monocytic leukemia cells.

Other Notes

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Legal Information

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

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Certificate of Analysis (COA)

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Protocols & Articles


GC Column Selection Guide

The History of Supelco and the Capillary Column How to Choose a Capillary Column Additional Reading/Product Literature Column Phase Selection by Industry Column Phase Selection by Application Cross-R...
Keywords: Adsorption, Air Monitoring, Chemical industry, Chromatography, Derivatizations, Detection methods, Electron capture detector, Environmental, Gas chromatography, Herbicides, High performance liquid chromatography, Immobilization, Industries, Mass selective detector, Mass spectrometry, Metabolites, Nitrogen phosphorus detector, Pesticides, Pharmaceutical, Purification, Separation, Size-exclusion chromatography, Solid phase extractions, Solid phase microextractions, Solvents, Substitutions

Related Content

How to Choose a Capillary GC Column

An optimized chromatographic separation begins with the column. The selection of the proper capillary column for any application should be based on four significant factors:
How to Choose a Capillary GC Column
Keywords: Chromatography, Condensations, Gas chromatography, Immobilization, Mass spectrometry, Pesticides, Separation, Size-exclusion chromatography, Solid phase microextractions, Solvents, Vaporization

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