Ultrapotassic Mafic Rocks as Geochemical Proxies for Post-collisional Dynamics of Orogenic Lithospheric Mantle: the Case of Southwestern Anatolia, Turkey

被引:232
|
作者
Prelevic, D. [1 ,2 ]
Akal, C. [3 ]
Foley, S. F. [1 ]
Romer, R. L. [4 ]
Stracke, A. [5 ]
Van Den Bogaard, P. [6 ]
机构
[1] Johannes Gutenberg Univ Mainz, Inst Geol Sci, Geocycles Res Ctr, D-55099 Mainz, Germany
[2] Univ Belgrade, Fac Min & Geol, Belgrade 11000, Serbia
[3] Dokuz Eylul Univ, Muhendisl Fak, Jeoloji Muhendisligi Bolumu, TR-35160 Izmir, Turkey
[4] Geoforschungszentrum Deutschland, D-14473 Potsdam, Germany
[5] Univ Munster, Inst Mineral, D-48149 Munster, Germany
[6] Ifm Geomar Leibniz Inst Marine Sci, D-24148 Kiel, Germany
关键词
Sr; Nd; Hf; Pb isotopes; clinopyroxene; trace elements; lamproites; Mediterranean; Menderes Massif; TRACE-ELEMENT GEOCHEMISTRY; ALKALINE VOLCANIC-ROCKS; CENTRAL MENDERES MASSIF; WESTERN ANATOLIA; EXTENSIONAL TECTONICS; ANTALYA OPHIOLITE; SUBDUCTION ZONE; CHROMIAN SPINEL; PB ISOTOPE; SW TURKEY;
D O I
10.1093/petrology/egs008
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
High-Mg ultrapotassic volcanic rock occurrences of lamproitic affinity are exposed in southwestern Anatolia, mostly within the Menderes Massif. From north to south the lamproitic volcanism shows increasingly younger ages ranging from 20 to 4 Ma. Volcanism is contemporaneous with more voluminous shoshonitic, high-K calc-alkaline, and ultrapotassic magmatic activity in the Simav-Selendi, Usak, Kirka, Koroglu, Afyon and Isparta-Golcuk areas. The southward decrease in the age of the volcanism correlates with changes in geochemical composition, particularly a decrease in Sr-87/Sr-86, Pb-207/Pb-204, Zr/Nb and Th/Nb, and an increase in Nd-143/Nd-144, Hf-176/Hf-177, Pb-206/Pb-204, Pb-208/Pb-204 and Ce/Pb, thus delineating a systematic change from orogenic (crust-like) to anorogenic (convecting mantle-like) signatures. Rare earth element compositions of clinopyroxene phenocrysts demonstrate an increasing role for residual garnet for locations in the central parts of the Menderes Massif, indicating a lithosphere thickness greater than 80 km. In contrast, K2O abundances remain nearly constant at around 7%, indicating buffering by phlogopite in the mantle source. Magma genesis in southwestern Anatolia is controlled by post-collisional extensional events initiated after major lithospheric thickening. Geochemical constraints suggest that the mantle source experienced two main geodynamic stages. The first stage caused ultradepletion of the mantle and subsequent metasomatic enrichment, which allowed coupling of the geochemical signatures of ultradepleted harzburgite with those of crust-derived sediments. This happened during the final closure stages of the southern Neotethys Ocean and the accretion of forearc oceanic lithosphere (island-arc type), as shallowly subducted material to the Anatolian lithosphere. The second stage is post-collisional, and is related to the collapse of the orogenic belt and the development of extension-related horst and graben structures. This stage is concurrent with the initiation of a thermal anomaly originating from a gap, identified by seismic tomography, in the subducted slab under western Anatolia. We propose that the lithospheric mantle underwent intense 'asthenospherization' owing to lithosphere-asthenosphere interaction, caused by the southward expansion of this gap during slab roll-back. The geochemical resemblance of the lamproites to more voluminous, contemporaneous shoshonitic magmas implies their derivation from a heterogeneous mantle source that had been affected by similar processes. These mantle processes may be closely associated with the major episode of uplift in the Menderes Massif.
引用
收藏
页码:1019 / 1055
页数:37
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