Title of article :
Axial development and radial non-uniformity of flow in packed columns
Author/Authors :
Park، نويسنده , , Jaekeun C and Raghavan، نويسنده , , Karthik and Gibbs، نويسنده , , Stephen J، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Abstract :
Flow inhomogeneity and axial development in low-pressure chromatographic columns have been studied by magnetic resonance imaging velocimetry. The columns studied included (a) an 11.7-mm I.D. column packed with either 50 μm diameter porous polyacrylamide, or 99 or 780 μm diameter impermeable polystyrene beads, and (b) a 5-mm I.D. column commercially packed with 10 μm polymeric beads. The packing methods included gravity settling, slurry packing, ultrasonication, and dry packing with vibration. The magnetic resonance method used averaged apparent fluid velocity over both column cross-sections and fluid displacements greater than one particle diameter and hence permits assessment of macroscopic flow non-uniformities. The results confirm that now non-uniformities induced by the conical distributor of the 11.7-mm I.D. column or the presence of voids at the column entrance relax on a length scale of the column radius. All of the 11.7-mm I.D. columns examined exhibit near wall channeling within a few particle diameters of the wall. The origins of this behavior are demonstrated by imaging of the radial dependence of the local porosity for a column packed with 780 μm beads. Columns packed with the 99-μm beads exhibit reduced flow in a region extending from ten to three-to-five particle diameters from the wall. This velocity reduction is consistent with a reduced porosity of 0.35 in this region as compared to approximately 0.43 in the bulk of the column. Ultrasonicated and dry-packed columns exhibit enhanced flow in a region located between approximately eight and 20 particle diameters from the wall. This enhancement maybe caused by packing density inhomogeneity and/or particle size segregation caused by vibration during the packing process. No significant non-uniformities on length scales of 20 μm or greater were observed in the commercially packed column packed with 10 μm particles.
Journal title :
Journal of Chromatography A
Journal title :
Journal of Chromatography A