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SP®-2340 Kapillar-GC-Säule
L × I.D. 30 m × 0.25 mm, df 0.20 μm
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About This Item
Empfohlene Produkte
Materialien
fused silica
Qualitätsniveau
Agentur
meets requirements for USP G5
Parameter
≤25-250 °C temperature (isothermal or programmed)
Beta-Wert
313
df
0.20 μm
Methode(n)
gas chromatography (GC): suitable
L × ID
30 m × 0.25 mm
Aktive Matrixgruppe
Non-bonded; poly(biscyanopropyl siloxane) phase
Säulenart
capillary highly polar
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Allgemeine Beschreibung
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. SP®-2340 is a cyanopropylsiloxane stationary phase, and has high polarity and temperature resistance.
Temp.-Grenzen:
McReynolds-Zahlen.: x′ y′ z′ u′ s′ = 419 654 541 758 637
- unter Raumtemperatur bis 250 °C
McReynolds-Zahlen.: x′ y′ z′ u′ s′ = 419 654 541 758 637
Anwendung
Capillary column coated with SP®-2340 stationary phase may be used in gas chromatographic analysis and separation of cis/trans isomeric fatty acids.
Sonstige Hinweise
We offer a variety of chromatography accessories including analytical syringes
Rechtliche Hinweise
SP is a registered trademark of Sigma-Aldrich Co. LLC
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Journal of lipid research, 24(2), 211-215 (1983-02-01)
Capillary gas-liquid chromatographic separation was studied for the complete set of the 26 theoretically possible isomers of mono-, di-, and trihydroxylated 5 beta-cholanic acids, which differ from one another in the number, position, and configuration of hydroxyl groups at C-3
The American journal of clinical nutrition, 31(6), 1041-1049 (1978-06-01)
Fatty acid patterns were determined in 83 brands of margarine, 9 brands of low-calorie margarine and 18 brands of shortening, frying and cooking fat purchased at random from the retail marker in the Federal Republic of Germany in 1973/1974, and
SP 2340 in the glass capillary chromatography of fatty acid methyl esters.
Journal of Chromatography A, 136 (2), 311-317 (1977)
Lipids, 16(9), 694-699 (1981-09-01)
Paris of C-24 epimeric sterols have been very difficult to separate by physical emthods. We report here the partial or complete separation of the trimethylsilyl ethers of nine pairs of C-24 epimeric sterols by gas liquid chromatography on a glass
Journal of separation science, 30(5), 740-745 (2007-04-28)
The solvation parameter model is used to characterize the separation properties of the polar stationary phases EC-Wax and PAG with a poly(ethylene oxide) backbone (substituted with propylene oxide in the case of PAG) and the cyanopropyl-substituted polysilphenylene-siloxane stationary phase BPX90
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