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High performance liquid chromatography column

Dapremont, O., Cox, G.B., Martin, M., Hilaireau, P., and Colin, H., Effect of radial gradient of temperature on the performance of large-diameter high-performance liquid chromatography columns I. Analytical conditions,. Chromatogr. A, 796, 81, 1998. [Pg.137]

R. Ricker, L. Sandoval, B. Permar, and B. Boyes, Improved reversed-phase high performance liquid chromatography columns for biopharmaceutical analysis, J. Pharmaceut. Biomed. Anal., 14, 93 (1995). [Pg.718]

Lamprecht, G., Kraushofer, T., Stoschitzky, K., Lindner, W. (2000). Enantioselective analysis of (R)- and (S)-atenolol I urine samples by a high-performance liquid chromatography column-switching setup. J. Chromatogr. B 740, 219-226. [Pg.342]

Donovan, S.F., Pescatore, M.C. (2002) Method for measuring the logarithm of the octanol-water partition coefficient by using short octadecyl-poly(vinyl alcohol) high-performance liquid chromatography columns. J. Chromatogr. A, 952, 47-61. [Pg.608]

A bottle of fizzy drink going flat is a fairly trivial example of partition, but the principle is vital to processes such as reactions in two-phase media or the operation of a high-performance liquid chromatography column. [Pg.206]

FM Rabel. Use and maintenance of microparticulate high performance liquid chromatography columns. J Chromatogr Sci 18 394-408, 1980. [Pg.395]

Williams, R.C., Vasta-Russell, J.F., Glajch, J.L., and Golebiowski, K., Separation of proteins on a polymeric fluorocarbon high-performance liquid chromatography column packing, J. Chromatogr., 371, 63, 1986. [Pg.138]

Alawi [319] has discussed an indirect method for the determination of nitrite and nitrate in surface, ground and rain water by reaction with excess phenol (nitrite ions first being oxidised to nitrate) and extraction of the o-nitrophenol produced, followed by separation on a reversed phase high performance liquid chromatography column with amperometric detection in the reduction mode. Recoveries were 82% for nitrate and 77% for nitrite in the concentration range 10-lOOOpg L 1. The method is claimed to be free of interferences from other ions. [Pg.152]

Hashem, H. and lira, T. Effect of chaotropic mobile phase additives on retention behaviour of -blockers on various reversed-phase high-performance liquid chromatography columns. J. Chmmatogr. A. 2006,1133, 69-75. [Pg.60]

O. R. Adlof, Normal-phase separation effects with lipids on a silver ion high-performance liquid chromatography column,/. Chromatogr. A 764 (1997),337-340. [Pg.261]

V. Casal, P. J. Martin-Alvarez, T. Harraiz, Comparative prediction of the retention behaviour of small peptides in several Reversed-phase high-performance liquid chromatography columns by using partial least squares and multiple linear regression, Analytica Chimica Acta, 326 (1996), 77-84. [Pg.407]

Bristow, P.A. and Knox, J.H. (1977) Standardization of test conditions for high performance liquid chromatography columns, Chromatographia 10, 279 289. [Pg.35]

Nerfin, C. Salafranca, J. Cacho, J. Rubio, C. Separation of polymer and on-line determination of several antioxidants and UV stabilizers by coupling size-exclusion and normal-phase high-performance liquid chromatography columns. J. Chromatogr., A 1995, 690, 230-236. [Pg.397]

Melo, L.F.C. Collins, C.H. Collins, K.E. Jardin, I.C.S.F. Stability of high performance liquid chromatography columns packed with poly(methyloctylsiloxane) sorbed and radiation-immobilized onto porous silica and zirconized silica. J. Chromatogr., A 2000, 869, 129-135. [Pg.1747]

JJ Kirkland, JL Galjch, RD Farlee. Synthesis and characterization of highly stable bonded phases for high-performance liquid chromatography column packings. Anal Chem 61 2—11, 1988. [Pg.168]

Valko, K., Plass, M., Bevan, C., Reynolds, D. and Abraham, M.H. (1998) Relationships between the chromatographic hydrophobicity indices and solute descriptors obtained by using several reversed-phase, diol, nitrile, cyclodextrin and immobilised artificial membrane bonded high-performance liquid chromatography columns. [Pg.1189]

Liu, G.L. Sha, R.G. Gao, S. Shen, Y.X. Wang, S.X. [Determination of cefixime in human plasma and urine using high performance liquid chromatography column switching technique]. Yao Hsueh Hsueh Poo, 1993, 28, 216-221... [Pg.277]

Taylor, R.B. Kendle, K.E. Reid, R.G. Hung, C.T. Chromatography of progesterone and its major metabolites in rat plasma using microbore high-performance liquid chromatography columns with conventional injection and detection systems. J.Chromatogr., 1987, 385, 383—392... [Pg.984]

Lockemeyer, M.R. Smith, C.V. Analysis of pentoxifylline in rabbit plasma using a Hisep high-performance liquid chromatography column. J.Chromatogr., 1990, 532, 162-167... [Pg.1097]

In the so-called high-performance liquid chromatography column materials with a small particle size (3-10 /im) and a narrow size distribution (- 20%) are used. [Pg.156]

Sadek, P.C., Carr, P.W., Bowers, LD. and Haddad, L.C. (1985). A Radiochemical Study of Irreversible Protein Loss in High-Performance Liquid Chromatography Column Frits. Anal. Biochem., 144,128. [Pg.211]


See other pages where High performance liquid chromatography column is mentioned: [Pg.322]    [Pg.352]    [Pg.302]    [Pg.22]    [Pg.189]    [Pg.39]    [Pg.694]    [Pg.74]    [Pg.121]    [Pg.127]    [Pg.152]    [Pg.832]    [Pg.208]    [Pg.487]    [Pg.92]   
See also in sourсe #XX -- [ Pg.528 ]

See also in sourсe #XX -- [ Pg.825 ]

See also in sourсe #XX -- [ Pg.31 ]




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