Final technical report: The effect of physical and chemical heterogeneities in a porous medium on the transport of bacteria | |
Hornberger, George M. ; Mills, Aaron L. ; Herman, Janet S. | |
University of Virginia, Department of Environmental Sciences, Charlottesville, VA (United States) | |
关键词: Coatings; Forecasting; Transport; Oxides; Deposition; | |
DOI : 10.2172/802158 RP-ID : NONE RP-ID : FG02-94ER61914 RP-ID : 802158 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
Among the demonstrated processes influencing the transport of bacteria through aquifers, the deposition of cells on mineral surfaces is one of the most important. Heterogeneous distribution of aquifer properties such as mineral-grain oxide coatings and preferred flow paths can control the numbers of microbes arriving a point down gradient from their injection, and these properties can also affect the distribution of the organisms remaining in the sedimentary matrix. The distribution of metal oxide coatings affects the final location of retained cells within the matrix but had no effect on total breakthrough of applied bacteria. We were able to demonstrate transverse mixing of both conservative tracers and bacteria between regions of differing hydraulic conductivity; the conservative tracer could be used to model the transverse mixing of the bacteria. We were able to show that the presence of metal oxide coatings on aquifer surfaces retarded a reactive tracer (SO{sub 4}{sup 2-}) that simulated bacterial retardation in the laboratory. When metal oxide coatings were absent (due to bacterial establishment of a reducing environment) the tracer and bacteria were not retarded. The effect was reproduced in a tracer experiment done in the field. The results suggest that bacterial transport in the subsurface is controlled by a number of interrelated and confounding factors that prevent accurate prediction of transport given the present state of knowledge.
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