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Results: 1-6 |
Results: 6

Authors: Liapis, AI Grimes, BA Lacki, K Neretnieks, I
Citation: Ai. Liapis et al., Modeling and analysis of the dynamic behavior of mechanisms that result inthe development of inner radial humps in the concentration of a single adsorbate in the adsorbed phase of porous adsorbent particles observed in confocal scanning laser microscopy experiments: diffusional mass transfer and adsorption in the presence of an electrical double layer, J CHROMAT A, 921(2), 2001, pp. 135-145

Authors: Grimes, BA Liapis, AI
Citation: Ba. Grimes et Ai. Liapis, Quantitative analysis and synthesis of the electrokinetic mass transport and adsorption mechanisms of a charged adsorbate in capillary electrochromatography systems employing charged adsorbent particles, J CHROMAT A, 919(1), 2001, pp. 157-179

Authors: Grimes, BA Liapis, AI
Citation: Ba. Grimes et Ai. Liapis, Modeling and analysis of the electrokinetic mass transport and adsorption mechanisms of a charged adsorbate in capillary electrochromatography systems employing charged nonporous adsorbent particles, J COLL I SC, 234(1), 2001, pp. 223-243

Authors: Grimes, BA Meyers, JJ Liapis, AI
Citation: Ba. Grimes et al., Determination of the intraparticle electroosmotic volumetric flow-rate, velocity and Peclet number in capillary electrochromatography from pore network theory, J CHROMAT A, 890(1), 2000, pp. 61-72

Authors: Liapis, AI Grimes, BA
Citation: Ai. Liapis et Ba. Grimes, Modeling the velocity field of the electroosmotic flow in charged capillaries and in capillary columns packed with charged particles: interstitial and intraparticle velocities in capillary electrochromatography systems, J CHROMAT A, 877(1-2), 2000, pp. 181-215

Authors: Liapis, AI Grimes, BA
Citation: Ai. Liapis et Ba. Grimes, Film mass transfer coefficient expressions for electroosmotic flows, J COLL I SC, 229(2), 2000, pp. 540-543
Risultati: 1-6 |