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Thin-layer chromatography-flame ionization detection

M. Mecozzi and Zs. Papai, Application of curve fitting thin-layer chromatography-flame ionization detection analysis of the carbohydrate fraction in marine mucilage and marine snow samples from Italian seas. J. Chromatogr. Sci. 42 (2004) 268-274. [Pg.57]

Ratnayake, W.M.N. and Ackman,R.G. 1985. Rapid analysis of Canola gum lipid composition by Iatroscan thin layer chromatography-flame ionization detection. Can. Inst. Food Sci. Technol. J. 18 284-289. [Pg.504]

Shantha, N.C. 1992. Thin-layer chromatography-flame ionization detection Iatroscan system. J. Chromatogr. 624 21-35. [Pg.504]

Thin-Layer Chromatography-Flame Ionization Detection... [Pg.173]

Thin-layer chromatography-flame ionization detection (TLC-FID) is an analytical technique that combines the separation characteristics of thin-layer chromatography with a rapid and sensitive method of quantitation, flame ionization detection. TLC-FID is particularly useful for the rapid separation and quantitation of total hpid classes. [Pg.185]

FIGURE 9.6 Thin-layer chromatography-flame ionization detection (TLC-FID) chromatograms of lipid extracts from the deep-sea flsh, orange roughy Hoplostethus atlanticus) (a) ovary, (b) muscle, and (c) liver. In this example, lipid classes were separated by a single development in a solvent system (mobile phase) of hexane diethyl etheriacetic acid (60 17 0.2, v/v/v) with the rod (stationary phase) fully scanned. See Section 9.4.2. [Pg.186]

A quantitative TLC technique has also been used to determine the functionality of polymers. This technique, thin layer chromatography-flame ionization detection (TLC-FID), is a specialized technique that requires more advanced equipment than standard TLC. In order to perform TLC-FID analysis of a polymer mixture, specially designed thin quartz rods coated with Si02 are used. Chromatographic separation of the mixture is performed on the rod analogous to traditional TLC. After separation, the rod is scanned with sufficient heat to ionize each component of the separated spots. The ionized spots are then quantitatively detected by a flame ionization detector. It is reported that this method has an error limit of about 2%. ... [Pg.354]

Thin-layer chromatography-flame ionization detection for lipid analysis... [Pg.19]

Table 1.4 Recent analyses of fossil fuels and related products by thin-layer chromatography/ flame ionization detection... Table 1.4 Recent analyses of fossil fuels and related products by thin-layer chromatography/ flame ionization detection...
Figure 1.4 Thin-layer chromatography-flame ionization detection chromatogram showing the separation of biogenic lipids from hydrocarbons in an extract of a petroleum-contaminated soil. Solvent systems hexane (40 min), toluene (15 min) and dichloromethane/methanol (95 5 vol./ vol.) (5 min), followed by a single full scan. Figure 1.4 Thin-layer chromatography-flame ionization detection chromatogram showing the separation of biogenic lipids from hydrocarbons in an extract of a petroleum-contaminated soil. Solvent systems hexane (40 min), toluene (15 min) and dichloromethane/methanol (95 5 vol./ vol.) (5 min), followed by a single full scan.
Fraser, A. J. and Taggart, C. T. (1988) Thin-layer chromatography-flame ionization detection calibration with natural and synthetic standards. Journal of Chromatography, 439, 404-7. [Pg.29]

Parrish, C. C. and Ackman, R. G. (1983) Chromarod separation for the analysis of marine lipid classes by latroscan thin-layer chromatography-flame ionization detection. Journal of Chromatography, 262, 103-12. [Pg.31]

Sebedio, J.-L. (1995) Utilization of thin-layer chromatography-flame ionization detection for lipid analyses, in New Trends in Lipid and Lipoprotein Analyses (eds J.-L. Sebedio and E. G. Perkins) AOCS Press, Champaign, IL, pp. 24-37. [Pg.32]

Volkman, J. K. and Nichols, P. D. (1991). Applications of thin layer chromatography-flame ionization detection to the analysis of lipids and pollutants in marine and environmental samples. Journal of Planar Chromatography, 4, 19-26. [Pg.33]

Yhtalo, G.M. Yanagida, G.K. Hufnagle, L., Jr Krahn, M.M. Determination of lipid classes and hpid content in tissues of aquatic organisms using a thin layer chromatography-flame ionization detection (TLC-FID) microlipid method. In Techniques in Aquatic Toxicology, Ostrander, G.K., Ed. CRC Press LLC Boca Raton, FL, 2005 227-237. [Pg.2114]

Johnson, R.B. Barnett, H.J. Determination of the fat content in fish feed hy supercritical extraction and subsequent lipid classification of the extract hy thin layer chromatography-flame ionization detection. Aquaculture 2003, 216 l-A), 263-282. [Pg.2115]

G. Thin Layer Chromatography-Flame Ionization Detection (TLC-FID)... [Pg.218]

FID = flame ionization detection GC = gas chromatography HPLC = high performance liquid chromatography ITMS = ion trap mass spectrometry MS = mass spectrometry PNMR = proton nuclear magnetic resonance TLC = thin-layer chromatography... [Pg.134]

Padley FB. The use of flame-ionization detector to detect components separated by thin-layer chromatography. J. Chromatogr. 1969 39 37—46. [Pg.289]

Chen, X., and B. R. T. Simoneit, Epicuticular Waxes from Vascular Plants and Particles in the Lower Troposphere Analysis of Lipid Classes by Iatroscan Thin-Layer Chromatography with Flame Ionization Detection, . /. Atmos. Chem., 18, 17-31 (1994). [Pg.424]

D1.6 Quantitation of Lipid Classes by Thin-Layer Chromatography with Flame Ionization Detection... [Pg.419]

Thin-layer chromatography (TLC) cholesterol content, 461 with flame ionization detection (TLC-FID) after hydrogenation, 496 (fig.), 498-500 latroscan instrument/system, 492 (fig.), 494 (table), 498 (fig.), 500-501... [Pg.767]


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See also in sourсe #XX -- [ Pg.249 , Pg.250 ]




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Chromatography detection

Chromatography/flame ionization detection

Flame ionization

Flame ionization detection

Quantitation of Lipid Classes by Thin-Layer Chromatography with Flame Ionization Detection

Thin detection

Thin layer chromatography detection

Thin-layer chromatography-flame ionization detection for lipid analysis

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