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Argon ionization detectors

Fales and Pisano (30) were the first to describe the gas chromatographic analysis of amphetamine. They used 4% SE-30 in a silanized glass column and an argon ionization detector for the separation of (3-phenethylamine, amphetamine, norephedrine, eph drine, histamine, tyramine, dimethyltriptamine, tryptamine, 5-methoxytryptamine, benzylamine, N-methylbenzylamine, octopamine, synephrine, normetanephrine, serotonin, N-acetyltryptamine, find melatonin. The method was also used for the analysis of amphetamine extracted from urine. [Pg.540]

James and Martin soon developed a gas-density balance as a detector, but the sensitivity of GLC was increased enormously when the argon ionization detector was invented by James Lovelock it was he who also produced the electron capture detector in conjunction with S. R. Lipsky in 1959.162 The flame ionization detector originated in the same year.163 Another important advance in the early days of GLC was the introduction of capillary columns, which were first used by M. J. E. Golay in 1956.164165 The development of some of the first commercial instrumentation has been described.166167... [Pg.163]

The type of detector to be employed determines the nature of the carrier gas which may be used. Argon is used with the argon ionization detector. Helium is used with flame-ionization, thermal conductivity, thermionic emission, and cross-section detectors. Hydrogen may be used in thermal conductivity detectors to give maximum sensitivity. Probably the commonest and cheapest carrier gas is nitrogen, which can be used with flame-ionization, electron capture, thermal conductivity, and cross-section detectors. Argon-methane mixtures may be used with electron capture detectors. [Pg.219]

Apparatus Barber-Colman Model 10 or an E.I.R. instrument fitted with argon ionization detector. [Pg.250]

Apparatm Barber-Colman Model 10 gas chromatograph equipped with an Argon ionization detector (A-4183). [Pg.277]

Thermal conductivity detectors have been discussed in detail by Ingraham (107), who also described their application to thermodynamic and kinetic measurements. In this same book. Lodding (4) describes the gas density detector as well as several ionization detectors, such as the argon ionization detector, the electron capture detector, and others. Flame ionization detectors have been described in detail by Brody and Chaney (108) and Johnson (109). The latter also discusses other types of detectors. Malone and McFad-den (110) described many different types of special identification detectors, such as those listed in Table 8.3. Numerous texts on gas chromatography describe a wide variety of detectors, many of them useful in EGD and EGA. [Pg.494]

Scentoscreen (Gas Chromatograph) with Argon Ionization Detector... [Pg.228]

Garzo et al studied the applicability of the argon ionization detector to the gas liquid chromatography of organosilicon... [Pg.234]

Gudzinowicz and Martin used a modified Barker Coleman Model 10 argon ionization detector chromatograph (Gudzinowicz and Smith 602,603) quantitive studies of organoarsenic and organo-... [Pg.452]

Lovelock developed the argon ionization detector as a forerunner of the electron capture detector (ECD, Lovelock and Lipsky). [Pg.5]


See other pages where Argon ionization detectors is mentioned: [Pg.131]    [Pg.256]    [Pg.519]    [Pg.617]    [Pg.119]    [Pg.194]    [Pg.207]    [Pg.198]    [Pg.198]    [Pg.192]    [Pg.205]    [Pg.234]    [Pg.586]    [Pg.333]    [Pg.779]    [Pg.903]    [Pg.162]    [Pg.162]    [Pg.306]    [Pg.323]    [Pg.448]    [Pg.449]    [Pg.452]    [Pg.131]   
See also in sourсe #XX -- [ Pg.163 ]

See also in sourсe #XX -- [ Pg.198 ]

See also in sourсe #XX -- [ Pg.586 ]




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