Influence of petrographic composition/organic matter distribution of fluvial aquifer sediments on the sorption of hydrophobic contaminants

Sedimentary Geology - Tập 129 - Trang 311-325 - 1999
Sybille Kleineidam1, Hermann Rügner1, Peter Grathwohl1
1Applied Geology, Geological and Palaeontological Institute, University of Tübingen, Sigwartstr. 10, 72074 Tübingen, Germany

Tài liệu tham khảo

Allen-King, 1998, Characterizing the heterogeneity and correlation of perchloroethene sorption and hydraulic conductivity using a facies-based approach, Water Resour. Res., 34, 385, 10.1029/97WR03496 Anderson, 1989, Hydrogeological facies models to delineate large-scale spatial trends in glacial and glaciofluvial sediments, Geol. Soc. Am. Bull., 101, 501, 10.1130/0016-7606(1989)101<0501:HFMTDL>2.3.CO;2 Ball, 1991, Long-term sorption of halogenated organic chemicals by aquifer material, 1. Equilibrium, Environ. Sci. Technol., 25, 1223, 10.1021/es00019a002 Ball, 1991, Long-term sorption of halogenated organic chemicals by aquifer material, 2. Intraparticle diffusion, Environ. Sci. Technol., 25, 1237, 10.1021/es00019a003 Barber, 1992, Geochemical heterogeneity in a sand and gravel aquifer: effect of sediment mineralogy and particle size on the sorption of chlorobenzenes, J. Contaminant Hydrol., 9, 35, 10.1016/0169-7722(92)90049-K Boggs, S., Jr., 1987. Principles of Sedimentology and Stratigraphy. Merrill, Columbus, Toronto, London, Melbourne, 784 pp. Chiou, 1979, A physical concept of soil-water equilibria for nonionic organic compounds, Science, 206, 831, 10.1126/science.206.4420.831 Critelli, 1997, The effect of source lithology, transport deposition and sampling scale on the composition of southern California sand, Sedimentology, 44, 653, 10.1046/j.1365-3091.1997.d01-42.x Ehlers, J., 1994. Allgemeine und historische Quartärgeologie. Enke, Stuttgart, 358 pp. Ehlers, G.E., Blatt, H., 1982. Petrology. Freeman, San Francisco, CA, 731 pp. Einsele, G., 1992. Sedimentary Basins. Springer, Berlin. Eissmann, L., Litt, T., 1994. Das Quartär Mitteldeutschlands. Altenburger Naturwissenschaftliche Forschungen, Heft 7, 458. Eyles, 1983, Lithofacies types and vertical profile models: An alternative approach to the description and environmental interpretation of glacial diamict and diamictite sequences, Sedimentology, 30, 393, 10.1111/j.1365-3091.1983.tb00679.x Fezer, 1969, Zur Interpretation von Schotteranalysen im Alpen-Vorland, Neues Jahrb. Geol. Paläontol. Mitt. Landesamt B.W., 104, 344 Freundlich, H., 1909. Kapillarchemie. Akademische Verlagsgesellschaft m.b.H., Leipzig. Grathwohl, 1990, Influence of organic matter from soils and sediments from various origins on the sorption of some chlorinated aliphatic hydrocarbons: implications on Koc-correlations, Environ. Sci. Technol., 24, 1687, 10.1021/es00081a010 Hantke, R., 1980. Eiszeitalter, die jüngere Erdgeschichte der Schweiz und seiner Nachbargebiete. Bd. 2, Ott, Thun., pp. 632. Harmon, 1994, Comparison of intraparticle sorption and desorption rates for a halogenated alkene in a sandy aquifer material, Environ. Sci. Technol., 28, 1650, 10.1021/es00058a017 Hedges, 1997, What happens to terrestrial organic matter in the ocean?, Org. Geochem., 27, 195, 10.1016/S0146-6380(97)00066-1 Huang, 1997, A distributed reactivity model for sorption by soils and sediments, 9. General isotherm nonlinearity and applicability of the dual reactive domain model, Environ. Sci. Technol., 31, 1703, 10.1021/es960677f Huggenberger, 1988, Grundwasserströmung in Schottern: Einfluss von Ablagerungsformen auf die Verteilung der Grundwassergeschwindigkeit, Wasserwirtschaft, 78, 202 Ibbeken, H., Schleyer, R., 1991. Source and Sediment. A Case Study of Provenance and Mass Balance at an Active Plate Margin (Calabria, Southern Italy). Springer, Berlin, 286 pp. Jussel, R., 1992. Modellierung des Transports gelöster Stoffe in inhomogenen Grundwasserleitern. Dissertation, Institute for Hydromechanics and Water Resources, ETH Zürich. Jussel, 1994, Transport modeling in heterogeneous aquifers, 1. Statistical description and numerical generation of gravel deposits, Water Resour. Res., 30, 1803, 10.1029/94WR00162 Karls, 1998, Carbon particles in dated sediments from Lake Michigan, Green Bay and tributaries, Environ. Sci. Technol., 32, 225, 10.1021/es970593m Keller, B., 1996. Lithofazies-Codes für die Klassifikation von Lockergesteinen. Mitt. Schweiz. Ges. Boden Felsmech. Frühjahrstagung 12. 4. 1996, 132, 5. Kleineidam, 1999, Organic matter facies and equilibrium sorption of phenanthrene, Environ. Sci. Technol., 33, 1637, 10.1021/es9806635 Kleineidam, 1999, Slow sorption kinetics in heterogeneous aquifer materials, Environ. Toxic. Chem., 18, 1673, 10.1002/etc.5620180810 Klingbeil, R., 1998. Outcrop Analogue Studies – Implications for Groundwater Flow and Contaminant Transport in Heterogeneous Glaciofluvial Quaternary Deposits. Tübinger Geowiss. Arb., TGA C43, 111 pp. Klingbeil, R., Teutsch, G., Kleineidam, S., Whittaker, J., Aigner, T., 1998. Characterisation and modelling of Quaternary outcrop analogues. Abstr. EGS Meet. 1998, Ann. Geophys., Suppl. II to Vol. 16. Klingbeil, R., Kleineidam, S., Asprion, U., Aigner, T., Teutsch, G., 1999. Relating lithofacies to hydrofacies: outcrop-based hydrogeological characterisation of Quaternary gravel deposits. Sediment. Geol. 129, XXX–XXX. Miall, A.D., 1978. Lithofacies types and vertical profile models in braided river deposits: a summary. In: Miall, A.D. (Ed.), Fluvial Sedimentology. Can. Soc. Pet. Geol. Mem. 5, 597–604. Miall, A.D., 1996. The Geology of Fluvial Deposits: Sedimentary Facies, Basin Analysis, and Petroleum Geology. Springer, Berlin, 582 pp. Nesbitt, 1996, Petrogenesis of sediments in the absence of chemical weathering: effects of abrasion and sorting on bulk composition and mineralogy, Sedimentology, 43, 341, 10.1046/j.1365-3091.1996.d01-12.x Peters, 1986, Guidelines for evaluating petroleum source rock using programmed pyrolysis, Am. Assoc. Pet. Geol. Bull., 70, 318 Pignatello, J.J., 1989. Sorption dynamics of organic compounds in soils and sediments. In: Sawhney, B.L., Brown, K. (Eds.), Reactions and Movement of Organic Chemicals in Soils. SSSA Spec. Publ. 22, Madison, WI, pp. 45–80. Ruess, M., 1994. Sorption und Sorptionskinetik von Phenanthren in Karbonaten und Sandsteinen. Unveröff. Diplomarbeit, Institut für Geologie und Paläontologie der Universität Tübingen. Rügner, H., 1998. Einfluß der Aquiferlithologie des Neckartals auf die Sorption und Sorptionskinetik organischer Schadstoffe. Tübinger Geowiss. Arb., TGA C39, 78 pp. Rügner, 1999, Long term sorption kinetics of phenanthrene in aquifer materials, Environ. Sci. Technol., 33, 1645, 10.1021/es980664x Rutherford, 1992, Influence of soil organic matter composition on the partition of organic compounds, Environ. Sci. Technol., 26, 336, 10.1021/es00026a014 Schüth, C., 1994. Sorptionskinetik und Transportverhalten von polyzyklischen aromatischen Kohlenwasseerstoffen (PAK) im Grundwasser — Laborversuche. Tübinger Geowiss. Arb., TGA C19, 80 pp. Siegenthaler, 1993, Pleistocene Rhine gravel: deposits of a braided river system with dominant pool preservation, Braided Rivers Geol. Soc. Spec. Publ., 75, 147, 10.1144/GSL.SP.1993.075.01.09 Terton, H., 1994. Auswirkungen der lithologischen Zusammensetzung des Horkheimer Aquifer-Materials auf die Sorption von Phenanthren. Unveröff. Diplomarbeit, Institut für Geologie und Paläontologie der Universität Tübingen. Teutsch, 1990, The environmental research field site `Horkheimer Insel': research program, instrumentation and first results, J. Hydraul. Res., 28, 491, 10.1080/00221689009499062 Teutsch, G., Klingbeil, R., Kleineidam S., 1998. Numerical modeling of reactive transport using aquifer analogue data. In: Herbert, M., Kovar, K. (Eds.), Groundwater Quality: Remediation and Protection, IAHS Publ. 250, 381–391. Weber, 1992, A distributed reactivity model for sorption by soils and sediments, 1. Conceptual basis and equilibrium assessments, Environ. Sci. Technol., 26, 1955, 10.1021/es00034a012