Electrical lithosphere beneath the Kaapvaal craton, southern Africa

被引:78
作者
Evans, Rob L. [1 ]
Jones, Alan G. [2 ]
Garcia, Xavier [3 ]
Muller, Mark [2 ]
Hamilton, Mark [2 ]
Evans, Shane [4 ]
Fourie, C. J. S. [5 ]
Spratt, Jessica [2 ]
Webb, Susan [6 ]
Jelsma, Hielke [4 ]
Hutchins, Dave [7 ]
机构
[1] Woods Hole Oceanog Inst, Dept Geol & Geophys, Woods Hole, MA 02543 USA
[2] Dublin Inst Adv Studies, Dublin 2, Ireland
[3] Barcelona Ctr Subsurface Imaging, Unitat Tecnol Marina, E-08003 Barcelona, Spain
[4] De Beers Grp Serv, ZA-2135 Southdale, South Africa
[5] Council Geosci, Pretoria, South Africa
[6] Univ Witwatersrand, Sch Geosci, ZA-2050 Johannesburg, South Africa
[7] Geol Survey Namibia, Windhoek, Namibia
基金
美国国家科学基金会;
关键词
SEISMIC ANISOTROPY; CONTINENTAL LITHOSPHERE; WATER-CONTENT; MANTLE BENEATH; ORTHO-PYROXENE; CONDUCTIVITY; EVOLUTION; ASTHENOSPHERE; TEMPERATURE; HYDROGEN;
D O I
10.1029/2010JB007883
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A regional-scale magnetotelluric (MT) experiment across the southern African Kaapvaal craton and surrounding terranes, called the Southern African Magnetotelluric Experiment (SAMTEX), has revealed complex structure in the lithospheric mantle. Large variations in maximum resistivity at depths to 200-250 km relate directly to age and tectonic provenance of surface structures. Within the central portions of the Kaapvaal craton are regions of resistive lithosphere about 230 km thick, in agreement with estimates from xenolith thermobarometry and seismic surface wave tomography, but thinner than inferred from seismic body wave tomography. The MT data are unable to discriminate between a completely dry or slightly "damp" (a few hundred parts per million of water) structure within the transitional region at the base of the lithosphere. However, the structure of the uppermost similar to 150 km of lithosphere is consistent with enhanced, but still low, conductivities reported for hydrous olivine and orthopyroxene at levels of water reported for Kaapvaal xenoliths. The electrical lithosphere around the Kimberley and Premier diamond mines is thinner than the maximum craton thickness found between Kimberley and Johannesburg/Pretoria. The mantle beneath the Bushveld Complex is highly conducting at depths around 60 km. Possible explanations for these high conductivities include graphite or sulphide and/or iron metals associated with the Bushveld magmatic event. We suggest that one of these conductive phases (most likely melt-related sulphides) could electrically connect iron-rich garnets in a garnet-rich eclogitic composition associated with a relict subduction slab.
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页数:16
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