The influence of tortuosity on molecular diffusion in freshwater sediments of high porosity

In sediments, diffusive transport of ions and molecules is basically influenced by two sediment characteristics: tortuosity and porosity. For the first time, the formation factor F, which combines the effect of tortuosity and porosity on diffusion, was quantified in freshwater sediments at submillim...

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Veröffentlicht in:Geochimica et cosmochimica acta 2004-04, Vol.68 (7), p.1519-1528
Hauptverfasser: Maerki, M, Wehrli, B, Dinkel, C, Mueller, B
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Sprache:eng
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Zusammenfassung:In sediments, diffusive transport of ions and molecules is basically influenced by two sediment characteristics: tortuosity and porosity. For the first time, the formation factor F, which combines the effect of tortuosity and porosity on diffusion, was quantified in freshwater sediments at submillimeter resolution. Sediment cores were treated with KCl and F was determined using a resistivity sensor and K super(+) selective electrodes. F was determined in sediments from different water depths of the eutrophic Lake Zug (Switzerland): In sandy sediments from a shallow site (12 m depth), F increased by approximately 50% within a few millimeters below the sediment surface. In clayey and silty sediments from the oxic (160 m depth), F increased by only 10% just below the sediment surface. Values of F were correlated with the porosity at each depth. We found close correlations of F = 1.02 . phi super(-1.81) for clay-silt sediments, and F = 1.04 . phi super(-1.21) for sandy sediments. The exponents are considerably smaller in Lake Zug than found for marine sediments, thus, diffusive transport seems to be less affected by tortuosity in this freshwater system.
ISSN:0016-7037
DOI:10.1016/j.gca.2003.09.019