Precise eclogitization ages deduced from Rb/Sr mineral systematics: The Maksyutov complex, Southern Urals, Russia

被引:78
作者
Glodny, J
Bingen, B
Austrheim, H
Molina, JF
Rusin, A
机构
[1] Geoforschungszentrum Potsdam, D-14473 Potsdam, Germany
[2] Geol Survey Norway, N-7491 Trondheim, Norway
[3] Univ Oslo, Mineral Geol Museum, N-0562 Oslo, Norway
[4] Ubr RAS, Inst Geol & Geochem, Ekaterinburg 62015, Russia
关键词
D O I
10.1016/S0016-7037(01)00842-0
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 Maksyutov complex (Southern Urals, Russia) is a well-preserved example of subduction-related high-pressure metamorphism. One of its two litho-tectonic units consists of rocks that experienced eclogite-facies conditions. Published 40Ar/39Ar data on phengite, U/Pb data on rutile, and Sm/Nd mineral data define a cluster of ages around 370 to 380 Ma. Nevertheless, no consensus exists as to the detailed interpretation of data and the exact age of eclogitization. We present new, high-precision internal mineral Rb/Sr isochrons for eclogite-facies metabasites, felsic eclogites, and eclogite-facies quartz veins. Nine isochrons, mainly controlled by omphacite and white mica phases, give concordant ages with an average value of 375 +/- 2 Ma (2sigma). Microtextural features, such as prograde growth zoning in eclogite-facies phases, suggest that the assemblages dated formed at a stage of prograde metamorphism. Sr-isotopic equilibria among eclogite-facies phases, and among eclogite-facies fluid veins and the host rocks, indicate that our ages reflect crystallization ages, related to the prograde-metamorphic, probably fluid-mediated eclogitization reactions. This interpretation is reinforced by data from fluid-precipitated quartzitic eclogites, whose modal composition, together with intergrowth relationships, conclusively imply closed-system behavior after crystallization. The possible occurrence of a pre-375 Ma event of ultra-high-pressure metamorphism (UHPM) in the Maksyutov complex is disproved by isotope systematics, microtextures, and mineral zoning patterns. Copyright (C) 2002 Elsevier Science Ltd.
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页码:1221 / 1235
页数:15
相关论文
共 65 条
[11]   Crustal-scale structure and evolution of an arc-continent collision zone in the southern Urals, Russia [J].
Brown, D ;
Juhlin, C ;
Alvarez-Marron, J ;
Perez-Estaun, A ;
Oslianski, A .
TECTONICS, 1998, 17 (02) :158-170
[12]   Coesite-bearing eclogites from the Bixiling Complex, Dabie Mountains, China: Sm-Nd ages, geochemical characteristics and tectonic implications [J].
Chavagnac, V ;
Jahn, B .
CHEMICAL GEOLOGY, 1996, 133 (1-4) :29-51
[13]   A model of Palaeozoic obduction and exhumation of high-pressure/low-temperature rocks in the southern Urals [J].
Chemenda, A ;
Matte, P ;
Sokolov, V .
TECTONOPHYSICS, 1997, 276 (1-4) :217-227
[14]   Pb diffusion in rutile [J].
Cherniak, DJ .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 2000, 139 (02) :198-207
[16]  
Dobretsov, 1974, GLAUCOPHANE SCHISTS
[17]  
Dobretsov N L, 1996, INT GEOL REV, V38, P136
[18]  
DOBRETSOV NL, 1984, OFIOLITI, V9, P401
[19]   CLOSURE TEMPERATURE IN COOLING GEOCHRONOLOGICAL AND PETROLOGICAL SYSTEMS [J].
DODSON, MH .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1973, 40 (03) :259-274
[20]   Main Uralian thrust and main Uralian normal fault: non-extensional Palaeozoic high-P rock exhumation, oblique collision, and normal faulting in the Southern Urals [J].
Echtler, HP ;
Hetzel, R .
TERRA NOVA, 1997, 9 (04) :158-162