Effects of invertebrate predation on the seasonal succession of a zooplankton community: a two year study in Lake Aydat,France |
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Authors: | Nicole Lair |
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Affiliation: | (1) Centre for Sedimentary & Environmental Geology, Department of Applied Geology, Queensland University of Technology, G.P.O. Box 2434;(2) Division of Continental geology, Bureau of Mineral Resources, Geology & Geophysics, G.P.O. Box 378, ACT 2691 Canberra, Australia;(3) Institute for the study of Earth, Oceans & Space, University of New Hampshire, 03824 Durham, N.H., USA |
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Abstract: | Saline playa lakes represent major geomorphic and hydrologic components of internal drainage basins in the arid to semiarid interior of Australia. These lakes mark the outcrop areas of regional shallow groundwater; thus, they are effective hydro-chemical sinks for elemental concentration and authigenic formation of carbonate, evaporite, and silica/silicate minerals.Field observations and petrochemical characterization of playa sediments from drainage basins in Western and Central Australia indicate that localized discharge of groundwater, from shallow aquifers in calcrete deposits, plays a fundamental role in geochemical evolution of playa-lake marginal facies. The available data indicates also that although evaporative concentration and salt recycling are major controls on geochemistry of the playas, yet a simple evaporative concentration model does not provide a complete explanation for brine evolution and particularly the geochemical process-product relationships observed in the individual playa lakes. The distribution of the chemical facies in the playas, in relation to geomorphic setting of the internal drainage basins, reflects a significant impact of variation in groundwater discharge pattern on the geochemical evolution of the playa lakes. Accordingly, the development of chemical facies in individual playas have progressed through repeated episodes of evaporative concentration, groundwater-level fluctuations and ion-exchange processes. |
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Keywords: | playa lakes geochemical evolution arid-zone Australia |
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