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Columns static coating

Instrumentation. Preliminary gas chromatographic analyses were carried out on a Perkin-Elmer 900 gas chromatograph equipped with a flame ionization detector and on a Hewlett-Packard 5730A gas chromatograph equipped with flame ionization and electron-capture detectors. The columns used were 180 cm x 2 mm ID glass columns packed with 3% SL-2100 (a methyl silicone fluid) on 80/100 mesh Supelcoport we also used 25 m X 0.25 mm ID glass capillary columns statically coated (7) with SE-52. [Pg.66]

Glass Capillary Gas Chromatography. For the quantitative analysis of the PAH a Varian 3700 gas chromatograph equipped, with a flame-ionization detector and coupled with a data system of Spectra Physics was used. The glass capillary columns statically coated with different stationary phases (OV 101, "SE 30 , SE 52,... [Pg.186]

Thixotropic suspensions are generally required for static coating due to the long column preparation time. [Pg.84]

Reidy, S. Lambertus, G. Reece, J. Sacks, R., High performance, static coated silicon micro fabricated columns for gas chromatography, Anal. Chem. 2006, 78, 2623 2630... [Pg.142]

The desired IL monomers are mixed with a free-radical initiator (azobisiso-butyronitrile, AIBN) in dichloromethane and coated onto the wall of the capillary column using the static coating method. The capillary is then sealed at both ends and heated to initiate polymerization. Finally, the capillary is unsealed and placed in a gas chromatograph and subsequently conditioned to remove any excess AIBN that did not completely decompose or react. [Pg.158]

Coating of capillary column using static coating method... [Pg.159]

The columns used were 20 m long, 300 pm ID. and were pretreated with colloidal silicic acid to stabilize the film of stationary phase. The columns were coated with 0.15% solution of the stationary phase in chloroform using the static method of coating (the different methods of coating capillary columns will be described later). Prior to use, each column was conditioned at 175°C in a stream of hydrogen. The... [Pg.110]

Open tubular columns can be coated internally with the appropriate stationary phase dissolved in a suitable solvent, or, alternatively, with monomeric materials that are subsequently polymerized to form a relatively rigid polymer film on the column walls. There are two basic methods for depositing the stationary phase as a surface film on a capillary column, dynamic coating and static coating, the latter being the most commonly used. [Pg.125]

Factors Controlling Selectivity Open Tubular Columns Dynamic Coating Static Coating Column Regeneration Capillary Column Design and Choice Stationary Phases for the GC Separation of Chiral Substances Synopsis References Chapter 6... [Pg.544]

Fig. 2 Contact angle goniometry images of static sessile drop on glass slides, left column 5 A glass, right column ACP-coated glass (still photos extracted from a... Fig. 2 Contact angle goniometry images of static sessile drop on glass slides, left column 5 A glass, right column ACP-coated glass (still photos extracted from a...
Usually ALOT columns can be prepared using dynamic or static coating techniques (classical methods, see, for example, [13, 14]). Static coating places considerable demands on adsorbent sus-... [Pg.184]

Preparation of high efficiency fused-silica capillary columns coated with graphitized carbon black impregnated with liquid phases was proposed by Bruner and co-workers [23, 24]. This method is a modification of that described by Xu and Vermeulen [25] (free release static coating) for the preparation of glass capillary columns. [Pg.188]


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See also in sourсe #XX -- [ Pg.127 ]




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Capillary columns static coating

Column preparation static coating

Columns coated

Open tubular columns static coating

Static coating

Static column

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