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  2. Gas chromatography - Wikipedia

    en.wikipedia.org/wiki/Gas_chromatography

    Argon is often used when analysing gas phase chemistry reactions such as F-T synthesis so that a single carrier gas can be used rather than two separate ones. The sensitivity is reduced, but this is a trade off for simplicity in the gas supply. Gas chromatography is used extensively in forensic science. Disciplines as diverse as solid drug dose ...

  3. Gas chromatography–mass spectrometry - Wikipedia

    en.wikipedia.org/wiki/Gas_chromatography–mass...

    The target analytes are extracted by mixing the sample with water and purge with inert gas (e.g. Nitrogen gas) into an airtight chamber, this is known as purging or sparging. The volatile compounds move into the headspace above the water and are drawn along a pressure gradient (caused by the introduction of the purge gas) out of the chamber ...

  4. Inert gas - Wikipedia

    en.wikipedia.org/wiki/Inert_gas

    The term inert gas is context-dependent because several of the inert gases, including nitrogen and carbon dioxide, can be made to react under certain conditions. [1] [2] Purified argon gas is the most commonly used inert gas due to its high natural abundance (78.3% N 2, 1% Ar in air) [3] and low relative cost.

  5. Inerting (gas) - Wikipedia

    en.wikipedia.org/wiki/Inerting_(gas)

    The flammability limits of the gas define those proportions, i.e. the ignitable range. In combustion engineering terms, the admission of inert gas can be said to dilute the oxygen below the limiting oxygen concentration. Inerting differs from purging. Purging, by definition, ensures that an ignitable mixture never forms. Inerting makes an ...

  6. Inverse gas chromatography - Wikipedia

    en.wikipedia.org/wiki/Inverse_Gas_chromatography

    Inverse gas chromatography is a physical characterization analytical technique that is used in the analysis of the surfaces of solids. [1]Inverse gas chromatography or IGC is a highly sensitive and versatile gas phase technique developed over 40 years ago to study the surface and bulk properties of particulate and fibrous materials.

  7. J. Calvin Giddings - Wikipedia

    en.wikipedia.org/wiki/J._Calvin_Giddings

    Gidding's work in separation sciences shed light on the chromatographic processes, as well as other separation techniques, including non-equilibrium, [5] diffusion & eddy diffusion, [6] pressure changes, [7] flow in paper and thin-layer chromatography, [8] preparative-scale, and programmed-temperature gas chromatography (GC), [9] exclusion ...