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Evidence for Late Carboniferous subduction-type magmatism in mafic-ultramafic cumulates of the SW Tauern window (Eastern Alps)

机译:西南牛头窗(东部阿尔卑斯山)的镁铁质-超镁铁质堆积中的晚石炭世俯冲型岩浆作用的证据。

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摘要

Hectometric bodies of fresh mafic-ultramafic cumulates have been discovered within the Central Gneiss of the Zillertal massif, SW Tauern window (eastern Alps, Italy). The cumulates, intruded by the Central Gneiss granitoids, are amphibole-bearing harzburgites and norites made of cumulitic olivine (Fo73–80), spinels, sulphides and plagioclase (An79–87), included in orthopyroxene (En76–83) and Ti-pargasite (Mg#=0.73–0.81). Major and trace element geochemistry indicates that these rocks represent olivine + spinel ± plagioclase cumulates, in which interstitial melt crystallized as orthopyroxene + Ti-pargasite. The parental melt has trace element patterns typical of subduction zone magmas. The crystallization sequence, mineral compositions, and modes indicate that cumulates formed from a H2O-rich basaltic andesite, which intruded at low-pressure (~2 kbar) and temperatures of 1,050–1,100 °C. SHRIMP U-Pb dating of zircons from ultramafic cumulates and adjacent metagranodiorite yielded ages of 309±5 and 295±3 Ma, respectively. In agreement with field relationships, these results show that the mafic-ultramafic cumulates represent a co-genetic, early product of the Late Carboniferous plutonic activity in the western Tauern window, which started in the Westphalian, earlier than previously thought. Our data on the most primitive rocks in the Zillertal massif permit, for the first time, insight into the parental magma and thus into the origin of this Late Carboniferous calc-alkaline magmatism, which was most likely related to slab break off during the Late Variscan convergence.
机译:在西南陶朗(Z Tauern)窗口(意大利东部阿尔卑斯山)的Zillertal地块的中片麻岩中发现了新鲜的铁磁-超铁屑堆积物的百分量。由中片麻岩花岗岩侵入的这些堆积物是邻闪石中的含角闪石的哈兹伯格岩和由积石橄榄石(Fo73-80 ),尖晶石,硫化物和斜长石(An79-87 )制成的降钙石。 En76–83 )和钛合成石(Mg#= 0.73–0.81)。主要和微量元素地球化学表明,这些岩石代表橄榄石+尖晶石±斜长石堆积物,其中间隙熔体结晶为邻苯二酚+钛辉石。母体熔体具有典型的俯冲带岩浆微量元素模式。结晶顺序,矿物组成和模式表明,富H2O的玄武质安山岩形成了堆积物,这些堆积物在低压(〜2 kbar)和1,050–1,100°C的温度下侵入。 SHRIMP U-Pb锆石来自超镁铁质积云和邻近的偏闪石闪长岩,年龄分别为309±5和295±3 Ma。与田间关系相吻合,这些结果表明,铁镁铁-超音波累积代表了西陶恩窗中晚石炭纪岩浆岩活动的共生早期产物,该活动始于威斯特伐利亚,早于以前的想象。我们在齐勒河谷地块中最原始的岩石上的数据首次允许洞悉母岩浆,从而了解这种晚期石炭系钙碱性岩浆作用的成因,这很可能与瓦里斯卡纳晚期板块的破裂有关。收敛。

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    《Contributions to Mineralogy and Petrology》 |2002年第4期|449-464|共16页
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    Dipartimento di Mineralogia e Petrologia Università di Padova C.N.R. Centro di Studio per la Geodinamica Alpina Corso Garibaldi 37 35137 Padova Italy;

    Research School of Earth Sciences The Australian National University Canberra ACT 0200 Australia;

    Research School of Earth Sciences The Australian National University Canberra ACT 0200 Australia;

    Dipartimento di Mineralogia e Petrologia Università di Padova C.N.R. Centro di Studio per la Geodinamica Alpina Corso Garibaldi 37 35137 Padova Italy;

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