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Volumn 1314, Issue , 2013, Pages 124-137
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A finite parallel zone model to interpret and extend Giddings' coupling theory for the eddy-dispersion in porous chromatographic media
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Author keywords
Axial dispersion; Eddy dispersion; Heterogeneous media; Laminar flow; Liquid chromatography; Plate height model
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Indexed keywords
AXIAL-DISPERSION;
CHROMATOGRAPHIC MEDIA;
CHROMATOGRAPHY COLUMNS;
CONSTANT CORRECTION FACTOR;
DISPERSION COEFFICIENT;
EDDY-DISPERSION;
HETEROGENEOUS MEDIA;
PLATE HEIGHT MODEL;
LAMINAR FLOW;
LIQUID CHROMATOGRAPHY;
POROUS MATERIALS;
VELOCITY;
DISPERSIONS;
ARTICLE;
CHEMICAL STRUCTURE;
DISPERSION;
EDDY DISPERSION;
FINITE LENGTH PARALLEL ZONE MODEL;
FLOW RATE;
LIQUID CHROMATOGRAPHY;
MATHEMATICAL MODEL;
PRIORITY JOURNAL;
AXIAL-DISPERSION;
EDDY-DISPERSION;
HETEROGENEOUS MEDIA;
LAMINAR FLOW;
LIQUID CHROMATOGRAPHY;
PLATE HEIGHT MODEL;
CHROMATOGRAPHY, LIQUID;
MODELS, THEORETICAL;
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EID: 84884981778
PISSN: 00219673
EISSN: 18733778
Source Type: Journal
DOI: 10.1016/j.chroma.2013.09.016 Document Type: Article |
Times cited : (28)
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References (46)
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