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2051001 Supelco

Inlet Liner, Split Type, Cup Design (unpacked)

pkg of 1 ea

Synonym: Inlet Liner, Split with cup, nonpacked

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Description

General description

Deactivated (silanized) glass inlet liner for capillary injection ports.
• Fits Agilent (5890, 6890, and 7890)
• Fits Finnigan (9001GCQ)
• Fits Varian (CP-1177 Injector)

The liner is the second most important part of the inlet. It is the centrepiece of the inlet system, basically a glass tube between the septum and the column, where the sample is evaporated and brought into the gas phase. Split/splitless inlet allows fast sample introduction and vaporization which is highly advantageous for small sample sizes. Though the injection modes for both split and splitless are carried out on the same inlet, there are certain differences like a splitless injection involves the complete introduction of the sample into the column whereas in a split injection, the sample is divided in the inlet as a result only part of the sample is introduced in the column.

Application

Split inlet equipped with a flip-top sealing system in a thermal desorption unit maybe used to perform thermal desorption (TD) for the determination of pyrethroids in water samples.

Price and Availability

Safety & Documentation

Safety Information

Safety Information for this product is unavailable at this time.

Documents

Certificate of Analysis

Protocols & Articles

Articles

Changing the GC Inlet Liner

No sample is perfectly clean and over time nonvolatile sample residues contaminate liners. As these contaminants accumulate they adversely affect chromatography by creating sites that lead to the abs...
Keywords: Absorption, Chromatography, Gas chromatography

GC Analysis of cis C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SLB®-IL111 after HPLC Fractionation using Silver Ion

From our library of Articles, Sigma-Aldrich presents GC Analysis of cis C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SLB®-IL111 after HPLC Fractionation using Silver Ion
Keywords: Chromatography, Flame ionization detector, Gas chromatography, Purification

GC Analysis of cis C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SP™-2560 after HPLC Fractionation using Silver Ion

From our library of Articles, Sigma-Aldrich presents GC Analysis of cis C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SP™-2560 after HPLC Fractionation using Silver Ion
Keywords: Chromatography, Flame ionization detector, Gas chromatography, Purification

GC Analysis of trans C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SLB®-IL111 after HPLC Fractionation using Silver Ion

From our library of Articles, Sigma-Aldrich presents GC Analysis of trans C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SLB®-IL111 after HPLC Fractionation using Silver Ion
Keywords: Chromatography, Flame ionization detector, Gas chromatography, Purification

GC Analysis of trans C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SP™-2560 after HPLC Fractionation using Silver Ion

From our library of Articles, Sigma-Aldrich presents GC Analysis of trans C18:1 FAMEs in Partially Hydrogenated Vegetable Oil (PHVO) on SP™-2560 after HPLC Fractionation using Silver Ion
Keywords: Chromatography, Flame ionization detector, Gas chromatography, Purification

Peer-Reviewed Papers
15

References

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