首页> 外文OA文献 >Serpentinised peridotites from an ultrahigh-pressure terrane in the Pohorje Mts. (Eastern Alps, Slovenia): Geochemical constraints on petrogenesis and tectonic setting
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Serpentinised peridotites from an ultrahigh-pressure terrane in the Pohorje Mts. (Eastern Alps, Slovenia): Geochemical constraints on petrogenesis and tectonic setting

机译:来自Pohorje MTS中的超高压地区的蛇形恒星。 (斯洛文尼亚东阿尔卑斯山):岩石和构造环境的地球化学约束

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摘要

The Slovenska Bistrica ultramafic complex (SBUC; Eastern Alps, Slovenia) occupies the south-easternmost part of the Pohorje Mountains, which represent an exhumed piece of continental crust subducted during the Cretaceous Eo-Alpine orogeny. The SBUC is composed of serpentinised harzburgites with local occurrences of garnet lherzolite, and is the only known occurrence of ultramafic rocks within the high- to ultrahigh-pressure nappe system apart from a few small dismembered pieces in the near vicinity. The harzburgites are highly depleted following melting within the spinel stability field, as exemplified by high whole-rock MgO contents (41.5-44.3 wt.%), low AlO (0.7-1.2 wt.%), low Lu (0.1-0.7), and high Cr# of Cr-spinel (ca. 0.5). Fluid-immobile incompatible trace elements (Ti, Sc, V, Zr, HREE, Th) correlate well with MgO, consistent with a melt depletion trend. Other incompatible elements (Ba, Sr, LREE) show little correlation and are probably modified by the serpentinisation process or later metamorphic overprint. However, comparable LREE enrichment of all samples and absence of negative Nb and Th anomalies suggests that this piece of mantle was already metasomatised by melts or fluids before serpentinisation. Garnet lherzolite in the SBUC recorded an UHP stage (4 GPa, 900 °C) not visible in the harzburgites. Because of the evidence of an earlier lower pressure stage within the spinel stability field, the SBUC represents a piece of subducted mantle. The protolith of the harzburgites is probably oceanic mantle, considering the high degree of melt depletion yet the lack of a subduction-zone signature. It therefore most likely represents a part of previously subducted Meliata oceanic mantle, which was part of a deeper section of the hanging wall along which subduction of the continental crust that is now exposed in Pohorje took place. Alternatively, it may represent mantle depleted and metasomatised in a continental rift zone, which was later incorporated in the hanging wall of the subduction zone and subsequently dragged down to UHP conditions. Crown Copyright © 2008.
机译:Slovenska Bistrica Ultramafic Complex(SBuc;东阿尔卑斯山,斯洛文尼亚)占据了波霍尔山的东南部,这代表了在白垩纪eo-高山orenogeny中膨胀的大陆地壳。 SBUC由偶发的哈尔茨堡组成,具有局部出现的石榴石,并且是近距离附近的一些小肢解件之外的高到超高压系统内的近距离压力系统内的超微岩石的出现。在尖晶石稳定性场内熔化后,哈尔茨伯是高度耗尽的,如高全岩MgO含量(41.5-44.3重量%)所示,低AlO(0.7-1.2重量%),低Lu(0.1-0.7),和Cr-spinel的高Cr#(约0.5)。流体固定性不相容的微量元素(Ti,Sc,v,Zr,Hree,Th)与MgO相关,与熔体耗尽趋势一致。其他不相容的元素(BA,SR,LREE)表现出很少的相关性,并且可能被蛇形化过程或后来的变质套印进行修饰。然而,对所有样品的可比富集和不存在阴性Nb和异常的富集表明,在蛇素化之前,这片幔型已经被熔体或液体弥思。 SBUC中的石榴石LherzoLite记录了在Harzburgites中不可见的UHP阶段(4 GPA,900°C)。由于尖晶石稳定性场内的较早较低的压力阶段的证据,SBUC代表了一块底层的地幔。考虑到高度熔化耗尽但缺乏俯冲区签名,哈尔茨伯里甲酸盐的促果实可能是海洋地幔。因此,最有可能代表先前俯冲Meliata大洋地幔,这是上盘沿着大陆地壳就是现在暴露在Pohorje的俯冲发生的更深部分的一部分的一部分。或者,它可以代表在大陆裂口区域中耗尽和脱落的壁龛,后来掺入俯冲区的悬挂壁中,随后拖动到UHP条件。皇冠版权所有©2008。

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