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Original Articles

On the Mechanism of Stationary Phase Retention in Rotating Coil Columns

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Pages 3237-3254 | Received 15 Mar 1996, Accepted 05 Apr 1996, Published online: 23 Sep 2006

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Read on this site (5)

P. S. Fedotov & V. A. Kronrod. (2001) MODELING OF THE HYDRODYNAMIC BEHAVIOR OF TWO NON-MISCIBLE LIQUID PHASES IN A ROTATING COILED COLUMN. Journal of Liquid Chromatography & Related Technologies 24:11-12, pages 1685-1697.
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Philip L. Wood, Barry Jaber & Ian A. Sutherland. (2001) A NEW HYPOTHESIS ON THE HYDRODYNAMIC DISTRIBUTION OF THE UPPER AND LOWER PHASES IN CCC. Journal of Liquid Chromatography & Related Technologies 24:11-12, pages 1629-1654.
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Akira Tsuyoshi, Hiroaki Ogawa, Kenichi Akiba, Harutaka Hoshi & Eiichi Kitazume. (2000) HIGH-SPEED COUNTERCURRENT CHROMATOGRAPHY USING A SMALL COILED COLUMN. Journal of Liquid Chromatography & Related Technologies 23:13, pages 1995-2008.
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P. S. Fedotov & R. V. Khachaturov. (2000) A NEW APPROACH TO DESCRIBING THE REGULARITIES OF STATIONARY PHASE RETENTION IN COUNTERCURRENT CHROMATOGRAPHY. Journal of Liquid Chromatography & Related Technologies 23:5, pages 655-667.
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T.A. Maryutina, S.N. Ignatova, P.S. Fedotov, B. Ya. Spivakov & D. Thiébaut. (1998) Influence of Composition and Some Physico-Chemical Properties of Two-Phase Liquid Systems On the Stationary Phase Retention in a Coil Planet Centrifuge. Journal of Liquid Chromatography & Related Technologies 21:1-2, pages 19-37.
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Articles from other publishers (4)

Walter Vetter, Marco Müller, Michael Englert & Simon Hammann. 2020. Liquid-Phase Extraction. Liquid-Phase Extraction 289 325 .
T. A. Maryutina & P. S. Fedotov. (2019) Countercurrent Chromatography in Elemental Analysis: From Oil to High-Purity Substances. Journal of Analytical Chemistry 74:3, pages 239-247.
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T. A. Maryutina & M. A. Rakcheev. (2005) Liquid countercurrent chromatography: A new approach to creating a concentration gradient in the stationary phase. Journal of Analytical Chemistry 60:4, pages 355-361.
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Petr S. Fedotov, Boris Ya. Spivakov & Valerii M. Shkinev. (2000) Possibility of Field-Flow Fractionation of Macromolecules and Particles in a Rotating Coiled Tube. Analytical Sciences 16:5, pages 535-536.
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