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Tectonic, magmatic, and metallogenic evolution of the Late Cretaceous arc in the Carpathian-Balkan orogen

机译:喀尔巴阡-巴尔干造山带晚白垩世弧的构造,岩浆和成矿演化

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摘要

The Apuseni-Banat-Timok-Srednogorie Late Cretaceous magmatic arc in the Carpathian-Balkan orogen formed on the European margin during closure of the Neotethys Ocean. It was subsequently deformed into a complex orocline by continental collisions. The Cu-Au mineralized arc consists of geologically distinct segments: the Apuseni, Banat, Timok, Panagyurishte, and Eastern Srednogorie segments. New U-Pb zircon ages and geochemical whole rock data for the Banat and Apuseni segments are combined with previously published data to reconstruct the original arc geometry and better constrain its tectonic evolution. Trace element and isotopic signatures of the arc magmas indicate a subduction-enriched source in all segments and variable contamination by continental crust. Themagmatic arc was active for 25Myr (similar to 92-67Ma). Across-arc age trends of progressively younger ages toward the inferred paleo-trench indicate gradual steepening of the subducting slab away from the upper plate European margin. This leads to asthenospheric corner flow in the overriding plate, which is recorded by decreasing Sr-87/Sr-86 (0.70577 to 0.70373) and increasing Nd-143/Nd-144 (0.51234 to 0.51264) ratios over time in some segments. The close spatial relationship between arc magmatism, large-scale shear zones, and related strike-slip sedimentary basins in the Timok and Pangyurishte segments indicates mild transtension in these central segments of the restored arc. In contrast, the Eastern Srednogorie segment underwent strong orthogonal intraarc extension. Segmental distribution of tectonic stress may account for the concentration of rich porphyry Cu deposits in the transtensional segments, where lower crustalmagma storage and fractionation favored the evolution of volatile-rich magmas.
机译:在新特提斯洋关闭期间,喀尔巴阡-巴尔干造山带中的Apuseni-Banat-Timok-Srednogorie晚白垩纪岩浆弧形成在欧洲边缘。随后,由于大陆碰撞,它变形为复杂的Orocline。铜金矿化弧段由地质上截然不同的部分组成:Apuseni,Banat,Timok,Panagyurishte和Eastern Srednogorie段。 Banat和Apuseni段的新的U-Pb锆石年龄和地球化学整体岩石数据与先前发布的数据相结合,以重建原始弧形几何形状并更好地限制其构造演化。弧状岩浆的痕量元素和同位素特征表明,在所有区段中都存在俯冲富集的源,并且受到大陆壳的各种污染。岩浆弧活跃了25多年(类似于92-67Ma)。朝着推断的古海沟逐渐趋于年轻的跨弧年龄趋势表明俯冲板块逐渐远离上板块欧洲边缘。这导致上覆板中的软流圈拐角流动,这是通过在某些段中随时间的推移降低Sr-87 / Sr-86(0.70577至0.70373)并增加Nd-143 / Nd-144(0.51234至0.51264)的比率来记录的。 Timok和Pangyurishte段的弧岩浆作用,大范围剪切带和相关的走滑沉积盆地之间的紧密空间关系表明,在这些恢复弧段的这些中央段有轻微的张移。相反,东部的Srednogorie段经历了强烈的正交弧内扩张。构造应力的分段分布可能解释了张性岩段富斑岩铜矿的富集程度,其中较低的地壳岩浆储存和分馏有利于富挥发性岩浆的演化。

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  • 来源
    《Tectonics》 |2015年第10期|1813-1836|共24页
  • 作者单位

    ETH, Inst Geochem & Petrol, Zurich, Switzerland;

    ETH, Inst Geochem & Petrol, Zurich, Switzerland;

    ETH, Inst Geochem & Petrol, Zurich, Switzerland|Bulgarian Acad Sci, Inst Geol, BU-1113 Sofia, Bulgaria;

    ETH, Inst Geophys, CH-8093 Zurich, Switzerland;

    ETH, Inst Geochem & Petrol, Zurich, Switzerland|Univ Zurich, Fac Math & Nat Sci, Zurich, Switzerland;

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