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High temperature gas chromatography mass

Evershed, R. P., C. Heron, and L. J. Goad (1990), Analysis of organic residues of archaeological interest by high temperature gas chromatography and high temperature gas chromatography-mass spectrometry, Analyst 115, 1339-1342. [Pg.573]

HTGC-MS High temperature gas chromatography-mass spectrometry... [Pg.5]

Bicalho, B., Pereira, A.S., Neto, F.R.A., Pinto, A.C., and Rezende, C.M., Application of high-temperature gas chromatography-mass spectrometry to the investigation of glycosidically bound components related to cashew apple Anacardium occidentale L. Var. nanum) volatiles, J. Agric. Food Chem., 48,1167-1174,... [Pg.167]

Pereira A, Carbonell SA, Radler de Aquino Neto F, Fernandes do Amaral AC, and Barnes RA (2002) High-temperature gas chromatography-mass spectrometry with glass capillary column for screening of natural products. Journal of Chromatography A 947 255-265. [Pg.1857]

Evershed, R. P. (1996) High-resolution triacylglycerol mixture analysis using high-temperature gas chromatography/mass spectrometry with a polarizable stationary phase, negative ion chemical ionization, and mass-resolved chromatography. J. Am. Soc. Mass Spectrom.y 1, 350-61. [Pg.240]

Buckley, S.A., Stott, A.W., Evershed, R.P. (1999) Studies of organic residues from ancient Egyptian mummies using high temperature-gas chromatography-mass spectrometry and sequential thermal desorption-gas chromatography-mass spectrometry and pyrolysis-gas... [Pg.823]

Castillo, M. and Barceloe, D., Characterization of organic pollutants in industrial effluents by high-temperature gas chromatography mass spectrometry. Trends in Analytical Chemistry, 18,26,1999. [Pg.743]

Ebdon, L., Evans, E. H., Pretorius, W. G., and Rowland, S. J., Analysis of geoporphyrins by high-temperature gas-chromatography inductively-coupled plasma-mass spectrometry and high-performance liquid-chromatography inductively-coupled plasma-mass spectrometry. Journal of Analytical Atomic Spectrometry 9(9), 939-943, 1994. [Pg.95]

W. G. Pretorius, L. Ehdon, S. J. Rowland, Development of a high-temperature gas chromatography - inductively coupled plasma mass spectrometry interface for the determination of metalloporphyrins, J. Chromatog., 646 (1993), 369-375. [Pg.724]

Hilkert, A. W., Douthitt, C. B., Schliiter, H. J. and Brand, W. A. (1999) Isotope ratio monitoring gas chromatography/mass spectrometry of D/H by high temperature conversion isotope ratio mass spectrometry. Rapid Communications in Mass Spectrometry 13, 1226 1230. [Pg.428]

Methods have been described for determining chlorinated aliphatic hydrocarbons in soil and chemical waste disposal site samples. The latter method involves a simple hexane extraction and temperature programmed gas chromatographic analysis using electron capture detection and high resolution glass capillary columns. Combined gas chromatography-mass spectrometry was used to confirm the presence of the chlorocarbons in the samples [4],... [Pg.158]

NMR) [24], and Fourier transform-infrared (FT-IR) spectroscopy [25] are commonly applied methods. Analysis using mass spectrometric (MS) techniques has been achieved with gas chromatography-mass spectrometry (GC-MS), with chemical ionisation (Cl) often more informative than conventional electron impact (El) ionisation [26]. For the qualitative and quantitative characterisation of silicone polyether copolymers in particular, SEC, NMR, and FT-IR have also been demonstrated as useful and informative methods [22] and the application of high-temperature GC and inductively coupled plasma-atomic emission spectroscopy (ICP-AES) is also described [5]. [Pg.239]

High-temperature high-resolution gas chromatography (HTGC) is an established technique for the separation of complex mixtures of high molecular weight compounds (HMW) which do not elute when analyzed on conventional GC columns [530]. The combination of this technique with mass spectrometry (i.e., HTGC-MS) is not so common, however, Elias et al. [530] used this novel application to evaluate and identify the occurrence of HMW tracers (> C40) from smoke aerosols. [Pg.73]

Janini, GM., Muschik, G.M., Schroer, J.A., and Zielinski, W.L., Gas-liquid-chromatographic evaluation and gas-chromatography mass spectrometric application of new high-temperature hquid-crystal stationary phases for polycyclic aromatic hydrocarbon separations. Ana/. Chem., 4S, 1879, 1976. [Pg.291]


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