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Ion exchange high-performance liquid chromatography

Imaoka, S. and Funae, Y., Ion-exchange high-performance liquid chromatography of membrane-bound protein cytochrome P-450,. Chromatogr., 375,83,1986. [Pg.280]

Homish, R. E. and Wiest, J. R., Quantitation of spectinomycin residues in bovine tissues by ion-exchange high-performance liquid chromatography with post-column derivatization and confirmation by reversed-phase high performance chromatography-atmospheric pressure chemical ionization tandem mass spectrometry, /. Chromatogr. A, 812, 123, 1998. [Pg.312]

High-performance liquid chromatography coupled with fluorescence detection [106, 107] or ion-exchange high-performance liquid chromatography with detection by graphite furnace atomic absorption spectroscopy [108] proved to be sensitive methods, but may lack from limitations in separation power and ease of identification of unknown products. [Pg.420]

G. Socher, R. Nussbaum, K. Rissler and E. Lankmayr, Analysis of sulfonated compounds by ion-exchange high-performance liquid chromatography-mass spectrometry. J. Chromatogr.A, 912 (2001) 53-60. [Pg.571]

B.6 Speciation of Arsenic Compounds by Ion-Exchange High-Performance Liquid Chromatography with Hydride Generation Atomic Fluorescence Detection. [Pg.173]

Wrobel K, Gonzalez EB, Wrobel K, et al. 1995. Aluminum and silicon speciation in human serum by ion-exchange high-performance liquid chromatography-electrothermal atomic absorption spectrometry and gel electrophoresis. Analyst 120 809-815. [Pg.363]

Mixtures of R3Sn+ compounds (R= -butyl. phenyl, cyclohexyl) were separated by ion exchange-high performance liquid chromatography-graphite furnace atomic absorption spectrometry [252], The small spread in calibration slopes in Fig. 4.10 signifies similar efficiencies for their separation and column recovery, as well as graphite furnace sensitivities. [Pg.135]

Metelev, V., and Agrawal, S. (1992). Ion-exchange high-performance liquid chromatography analysis of oligodeoxyribonucleotide phosphorothioates. Anal. Biochem. 200, 342-346. [Pg.532]

Further applications are described for sulfur (Fig. 2.6) and copper in water by reversed-phase or ion-exchange high-performance liquid chromatography . Also anions such as thiosulphate and polythionates were separated from environmental samples by HPLC (anion-exchange) . The sensitive detection was made possible by reaction with Ce(lV) after separation and fluorimetry of Ce(lII) ions. [Pg.184]

Dubinina, N.I. Kurenbin, O.I. Tennikova, T.B. Peculiarities of gradient ion-exchange high-performance liquid chromatography of proteins. J. Chromatogr. 1996, 753, 217-225. [Pg.1026]

J. Ostcrloh and D. Goldfield, Determination of nitrate and nitrite ions in human plasma by ion-exchange high-performance liquid chromatography,/. Liq. Chromaiogr.. 7,753. 1984. [Pg.79]

Startin, J. R., S. J. Hird, M. D. Sykes, J. C. Taylor, and A. R. C. Hill. 1999. Determination of residues of the plant growth regulator chlormequat in pears by ion-exchange high performance liquid chromatography-electrospray mass spectrometry. Analyst 124 1011-1015. [Pg.232]

Bahr-Lindstrom, H., Moherg, U., Sjodahl, J. and Jomvall, H., Ion-Exchange High-Performance Liquid-Chromatography Steps in Peptide Purifications. Biosci. Rep., 2, 803-811 (1982). [Pg.91]


See other pages where Ion exchange high-performance liquid chromatography is mentioned: [Pg.227]    [Pg.509]    [Pg.643]    [Pg.156]    [Pg.311]    [Pg.81]    [Pg.800]    [Pg.27]    [Pg.1465]    [Pg.374]    [Pg.392]    [Pg.13]    [Pg.121]    [Pg.100]    [Pg.1465]    [Pg.484]    [Pg.101]    [Pg.899]   
See also in sourсe #XX -- [ Pg.358 ]

See also in sourсe #XX -- [ Pg.79 ]




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