Sedimentological and geochemical evidence for palaeo-environmental change in the Makgadikgadi subbasin, in relation to the MOZ rift depression, Botswana

被引:69
作者
Ringrose, S
Huntsman-Mapila, P
Kampunzu, AB
Downey, W
Coetzee, S
Vink, B
Matheson, W
Vanderpost, C
机构
[1] Univ Botswana, Harry Oppenheimer Okavango Res Ctr, Maun, Botswana
[2] CNRS, UBO, UMR 6538, Domaine Ocean IUEM, F-29280 Plouzane, France
[3] Univ Botswana, Dept Geol, Gaborone, Botswana
[4] Univ Botswana, Dept Phys, Gaborone, Botswana
[5] EES Pty Ltd, Gaborone, Botswana
关键词
silcrete; calcrete; palaeo-environmental change; palaeo-Makgadikgadi subbasin; biogenic processes;
D O I
10.1016/j.palaeo.2004.11.024
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
This work considers new evidence for palaeo-enviromnental change taking place during the Pleistocene in northern Botswana. Duricrusted strandlines along the northeastern margin of Sua Pan provide palaeo-environmentat data pertaining to the Makgadikgadi subbasin (MSB) with inferences regarding the larger Nlakgadikgadi-Okavango-Zambezi (MOZ) rift depression. Field, XRD and geochemical data show that MSB strandlines comprise calcretes (LU1 type), MgO-rich calcretes with silica (LU2 type), sil-calcrete (LU3 type) and silcrete (LU4 type). Early freshwater episodes appear to have been followed by calcrete-dominated drying phases interspersed with repeated silcretisation. Calcretisation through pan littoral sediments may have been both biogenically and environmentally induced. Calcite precipitation was in part controlled by the Mg/Ca ratio of pore water in the pan littoral zone suggesting closed basin type evaporative conditions, which were followed by a major desiccation interval. Phases of silcrete precipitation appear to be related to periods when the geochemistry of the lake littoral more closely resembled present-day Na-CO3-SO4-Cl-type brines. Silica saturated acidic, moderately saline groundwater preceded Si precipitation which took place as the pH reduced. Si mobilisation occurred (inter alia) as a result of quartz grain dissolution enhanced by diatoms, bacteria and algal growth in the moist pan littoral. SiO2-rich pore waters migrated through cracked and desiccated calcrete into areas of lower salinity and lower pH resulting in preferential calcite removal and silcrete precipitation. Approximate TL dates imply that exposed littoral sand underwent calcretisation during the drying phases of extensive palaeo-lakes which occurred prior to 110 ka, 80-90 ka and 41-43 ka. These wet periods compare fairly well with Vostok core chronologies for southern Africa. (C) 2004 Elsevier B.V. All rights reserved.
引用
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页码:265 / 287
页数:23
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