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Fractionation techniques

COLUMNS FOR OTHER RELATED POLYMER SEPARATION OR FRACTIONATION TECHNIQUES... [Pg.596]

The quantity Gy (z) can be easily evaluated, even in the presence of defects, by using a continued fraction technique which does not assume any periodicity of the system 3/4,5 practice n levels of the continued fraction are computed exactly and the remaining part of the continued fraction is replaced by the usual square root terminator which corresponds to using the asymptotic values for the remaining coefficients. Note that these asymptotic values are fixed by the band limits which are known exactly in many cases. The more accurate the calculation of AE is required to be, the more exact... [Pg.374]

Cdlfen, H. and Antonietti, M.t Field-Flow Fractionation Techniques for Polymer and Colloid Analysis. VoL 150, pp. 67-187. [Pg.208]

The conventional approach to solvent extraction is the batch method. Early work with this method was hampered by the low concentration of the compounds present and the relative insensitivity of the methods of characterization. Thus lipids and hydrocarbons have been separated from seawater by extraction with petroleum ether and ethyl acetate. The fractionation techniques include column and thin-layer chromatography with final characterisation by thin-layer chromatography, infrared, and ultra-violet spectroscopy and gas chromatography. Of these techniques, only gas chromatography is really useful at levels of organic matter present in seawater. With techniques available today such as glass capillary gas chromatography and mass spectrometry, much more information could be extracted from such samples [20]. [Pg.366]

Kosian, P.A., E.A. Makynen, P.D. Monson, D.R. Mount, A. Spacie, O.G. Mekenyan, and G.T. Ankley. 1998. Application of toxicity-based fractionation techniques and structure-activity relationship models for the identification of phototoxic polycyclic aromatic hydrocarbons in sediment pore water. Environ. Toxicol. Chem. 17 1021-1033. [Pg.1401]

All peptides described above were separated, by means of the fractionation technique used by Westall together with free amino acids. [Pg.138]

Figure 1. Schematic of an FFF channel with the separation mechanism for normal FFF shown in detail. Reprinted from [7] Beckett, R. and Hart, B. T. Use of field flow fractionation techniques to characterize aquatic particles, colloids and macromolecules . In Environmental Particles. Vol. 2, IUPAC Series on Analytical and Physical Chemistry of Environmental Systems. Series eds. Buffle, J. and van Leeuwen, H. P., pp. 165-205. Copyright 1993 IUPAC. Reproduced with permission... Figure 1. Schematic of an FFF channel with the separation mechanism for normal FFF shown in detail. Reprinted from [7] Beckett, R. and Hart, B. T. Use of field flow fractionation techniques to characterize aquatic particles, colloids and macromolecules . In Environmental Particles. Vol. 2, IUPAC Series on Analytical and Physical Chemistry of Environmental Systems. Series eds. Buffle, J. and van Leeuwen, H. P., pp. 165-205. Copyright 1993 IUPAC. Reproduced with permission...
The use of filters and membranes of different pore size to accomplish a sequential size fractionation is in principle, and under certain circumstances, possible it was proposed (for literature see Buffle, 1988 and 1991) to estimate the size of the various colloids and macromolecules and to determine to which extent trace elements (particularly metals) are associated with various size categories of colloids and macromolecules. Such sequential size fractionation techniques need to be applied with extreme caution we list some of the reasons why these techniques may yield errorous results (for details consult Buffle, 1991) ... [Pg.283]

The aim of this chapter is to highlight recent advances in fractionation techniques for grape seed PAs, using as examples methods we are using for large-scale fractionation into monomers, oligomers, and polymers for assessment of bioactivity and bioavailability in animal model studies of Alzheimer s disease. Our methods represent modifications/combinations of previously described approaches. We first discuss the available methods and modifications and then present a case study for the fractionation of MegaNatural-AZ GSE. [Pg.35]

Crude GSE can be separated into distinct components from monomer-rich to oligomer- and polymer-rich fractions by solvent extraction followed by chromatography on Toyopearl resin. The pre-fractionation of the tannin crude extract by liquid-liquid extraction with ethyl acetate fractionates the monomers into the organic phase and improves the subsequent fractionation of oligomers and polymers on Toyopearl HW 40 resin. This fractionation technique is easy to operate and... [Pg.44]


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See also in sourсe #XX -- [ Pg.361 ]

See also in sourсe #XX -- [ Pg.237 , Pg.238 ]




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Adaptability, fractionation techniques

Adaptability, fractionation techniques characterization

Adaptation of Fractionation Techniques to Subzero Temperatures

Bioassay-directed fractionation techniques

Chromatographic techniques fractionation

Coupled chromatographic techniques cross-fractionation

Drying techniques fractionation

Extraction chemical fractionation techniques

Field flow fractionation technique

Field-flow fractionation hyphenated techniques

Flexibility, fractionation techniques

Flexibility, fractionation techniques characterization

Fractional derivative technique

Fractional derivative technique behavior

Fractional derivative technique equation

Fractional derivative technique functional derivatives

Fractional distillation separation technique

Fractional polarization technique

Fractionating Sizing Techniques

Fractionation by Leaching Techniques

Fractionation techniques for particle

Fractionation techniques, tissue

Fractionation ultrafiltration techniques

Fractionators optimization techniques

Numerical fractionation technique

Resolution, fractionation techniques

Resolution, fractionation techniques characterization

Separation techniques field-flow fractionation

TECHNIQUE 3 Fractional Distillation

Upgrading of meats using fractionation techniques

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