Crustal and lithospheric scale structures of the Precambrian Superior-Grenville margin

被引:35
作者
Adetunji, Ademola Q. [1 ]
Ferguson, Ian J. [1 ]
Jones, Alan G. [2 ]
机构
[1] Univ Manitoba, Dept Geol Sci, Winnipeg, MB R3T 2N2, Canada
[2] Dublin Inst Adv Studies, Dublin 4, Ireland
基金
加拿大创新基金会; 加拿大自然科学与工程研究理事会;
关键词
Grenville Province; Superior Province; Magnetotellurics; Geoelectric strike; Conductor; Lithosphere; CENTRAL METASEDIMENTARY BELT; NORTHWESTERN PONTIAC SUBPROVINCE; FRONT TECTONIC ZONE; ELECTRICAL-CONDUCTIVITY; MAGNETOTELLURIC DATA; SOUTHERN ONTARIO; GEOELECTRIC STRUCTURE; VELOCITY STRUCTURE; MANTLE STRUCTURE; CANADIAN SHIELD;
D O I
10.1016/j.tecto.2013.12.008
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
The lithosphere beneath the margin of the Archean Superior and Proterozoic Grenville provinces was investigated with a northwest-southeast oriented, 650-km-long profile of 40 magnetotelluric stations. Dominant geoelectric strike azimuths of N45 degrees E and N85 degrees E were defined for the crust and the lithospheric mantle respectively. A 2-D isotropic resistivity model derived using the crustal strike images resistive Laurentian margin rocks dipping southeast to the base of the crust, bounded to the northwest by the Grenville Front, and to the southeast by the Central Metasedimentary Belt Boundary Zone. The observation is in contrast to conductive mid to lower crust elsewhere in the region. A 2-D isotropic resistivity model determined using the lithospheric mantle strike azimuth reveals an extremely resistive region in the upper 100 km of the mantle lithosphere of the northern Grenville Province. The geometry of this body, which includes a well-defined base and southeast dip, suggests that it is Superior lithosphere. A sub-vertical conductor, located approximately 50 km along strike from the Mesozoic Kirkland Lake and Cobalt kimberlite fields, is interpreted to be due to re-fertilization of an older mantle scar. The resistivity model includes a horizontal conductor at 160 km depth beneath the southern Superior Province that is possibly the resistivity signature of the lithospheric-asthenospheric boundary. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:146 / 169
页数:24
相关论文
共 158 条
[1]  
Adetunji A.Q, 2013, GEOPHYS J UNPUB NOV
[2]  
Adetunji A.Q., 2013, THESIS U MANITOBA WI
[3]   ONE-DIMENSIONAL AND 2-DIMENSIONAL INVERSION OF MAGNETOTELLURIC DATA IN CONTINENTAL REGIONS [J].
AGARWAL, AK ;
POLL, HE ;
WEAVER, JT .
PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 1993, 81 (1-4) :155-176
[4]   Upper-mantle velocity structure of the lower Great Lakes region [J].
Aktas, Kadircan ;
Eaton, David W. .
TECTONOPHYSICS, 2006, 420 (1-2) :267-281
[5]  
[Anonymous], 2012, MAGNETOTELLURIC METH, DOI DOI 10.1017/CBO9781139020138.012
[6]   The continental lithosphere: Reconciling thermal, seismic, and petrologic data [J].
Artemieva, Irina M. .
LITHOS, 2009, 109 (1-2) :23-46
[7]  
BAHR K, 1988, J GEOPHYS-Z GEOPHYS, V62, P119
[8]   CRUSTAL STRUCTURE AND KINEMATIC FRAMEWORK OF THE NORTHWESTERN PONTIAC SUBPROVINCE, QUEBEC - AN INTEGRATED STRUCTURAL AND GEOPHYSICAL-STUDY [J].
BENN, K ;
MILES, W ;
GHASSEMI, MR ;
GILLETT, J .
CANADIAN JOURNAL OF EARTH SCIENCES, 1994, 31 (02) :271-281
[9]  
Benn K, 2006, GEOPHYS MONOGR SER, V164, P267
[10]   A summary of electromagnetic studies on the Abitibi-Grenville transect [J].
Boerner, DE ;
Kurtz, RD ;
Craven, JA .
CANADIAN JOURNAL OF EARTH SCIENCES, 2000, 37 (02) :427-437