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Fluorinated ethylene-propylene capillary

Separation capillary columns are made in fluorinated ethylene- propylene copolymer. Detection is achieved by conductivity cells and an ac. conductivity mode of detection is used for making the separations visible. The driving current is supphed by a unit enabling independent currents to be preselected for the preseparation and final analytical stages. The run of the analyser is controlled by a programmable timing and control unit. The zone lengths from the conductivity detector, evaluated electronically, can be printed on a line printer. [Pg.16]

The separation unit of the capillary isotachophoresis instrument used is shown in Fig. 13.1. A 0.85mm id capillary tube made of fluorinated ethylene propylene copolymer was used in the pre-separation (first) stage and a capillary tube of 0.30mm id made of the same material served for the separation in the second stage. Both tubes were provided with conductivity detection cells [18] and an ac conductivity mode of detection [15] was used for making the separations visible. [Pg.223]

Radioisotope detection of P, 14C, and Tc was reported by Kaniansky et al. (7,8) for isotachophoresis. In their work, isotachophoretic separations were performed using fluorinated ethylene-propylene copolymer capillary tubing (300 pm internal diameter) and either a Geiger-Mueller tube or a plastic scintillator/photomultiplier tube combination to detect emitted fi particles. One of their reported detection schemes involved passing the radiolabeled sample components directly through a plastic scintillator. Detector efficiency for 14C-labeled molecules was reported to be 13-15%, and a minimum detection limit of 0.44 nCi was reported for a 212 nL cell volume. [Pg.61]

Materials. Cylinders of Fj, HF, and BF3 were obtained from Matheson Gas Co., East Rutherford, NJ. Ozark-Mahoning Co. (Tulsa, OK) provided the KjNiFj, AgF, and AsFj. Quartz X-ray capillaries were obtained from Charles Supper Co., Natick, MA. Chemplast Inc. (Wayne, NJ) supplied the fluorinated ethylene propylene tubing... [Pg.379]

Both on-column and post-column detection schemes have been developed for radionuclide detection for CE. The most common type used is an on-column configuration, which yields detection limits in the 10 M range for isotopes such as P. Isotachophoretic separations of C were among the first examples of online capillary radionuclide detection, performed by Kaniansky et al. The associated instmment uses 300-p,m ID fluorinated ethylene-propylene copolymer capillary tubing, and the separation eluent flows directly into a plastic scintillator cell between two PMTs. The scintillation events are detected coincidentally between the two PMTs, such that only if both PMTs receive an input within a short time will they register the count as signal. This kind of coincidence detection ensures that nonscintillation photons that come from outside the detection cell and only hit one PMT are not counted. This system exhibits a detection limit of 16 Bq for analytes, with a detector efficiency of 13-15%. [Pg.323]

Separation capillary columns are made in fluorinated ethylene-propylene copolymer. Detection is achieved by conductivity cells and an... [Pg.18]


See other pages where Fluorinated ethylene-propylene capillary is mentioned: [Pg.19]    [Pg.329]    [Pg.405]    [Pg.546]    [Pg.547]    [Pg.648]    [Pg.1558]    [Pg.21]   
See also in sourсe #XX -- [ Pg.546 ]




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Fluorinated ethylene-propylene

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