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Magma mixing, zircon U-Pb ages and Hf isotopes: Insights for the Miocene magmatic plumbing system in the Soroche Porphyry, Puna Argentina, Central Andes

机译:岩浆混合,锆石U-PB Ages和HF同位素:Soroche Porphyry,普陀阿根廷,中央山脉的中间岩浆管道系统见解

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摘要

This research highlights the importance to study the magmatic plumbing systems in Southern Puna, NW Argentina, emphasizing the significance of understanding the genesis of sub-volcanic bodies and their implications for the crustal assimilation and recycling processes. In the southeastern edge of Ratones salar, Southern Puna, there is an intrusive body cropping out, named Soroche Porphyry. This intrusion is formed by porphyritic rhyodacitic, basaltic andesites, and porphyritic andesitic rocks, with magma mixing relations between the mentioned lithologies. The main features of the Soroche Porphyry are described to interpret the dynamic aspects of magma mixing, identify and define textural, mineralogical, and geochemical features, directly related to the mentioned process. Taking into account these features, the results showed that a hybrid magma (homogeneous porphyritic andesite) was produced by mixing processes between basaltic andesitic and rhyodacitic magmas, whereas, the heterogeneous porphyritic andesite represent mingling areas, whereby the end members are easily identified. Furthermore, we dated the main rocks of the porphyry using zircon U-Pb methodology by LA-MC-ICPMS, complemented by Hf isotopes analyses. The geochronological data evidenced magmatic activity around similar to 15 Ma, allowing the correlation of the Soroche Porphyry with the Inca Viejo Formation. The basaltic andesites yielded a zircon U-Pb age of 15.63 +/- 0.08 Ma, the heterogeneous porphyritic andesites displayed an age of 15.52 +/- 0.16 Ma, and the rhyodacites showed an age of 15.13 +/- 0.12 Ma. The isotopic epsilon(Hf) (15 Ma) values from the rhyodacite between -4.9 and -11.3, suggested a great amount of crustal components, evidencing that the rhyodacitic magmas derived from assimilating and recycling crustal rocks probably from the lower Paleozoic rocks.
机译:本研究突出了研究南普纳州南部北部阿根廷南部的岩浆管道系统的重要性,强调了了解亚火山体的成因及其对地壳同化和再循环过程的影响的重要性。在普敦南部的Ratines Salar的东南边缘,有一个侵入式身体,名为Soroche斑岩。这种侵入由卟啉籽岩,玄武岩骨质和卟啉和岩岩石形成,岩浆混合在所述岩性之间的关系。描述了Soroche斑岩的主要特征来解释岩浆混合,识别和定义纹理,矿物学和地球化学特征的动态方面,直接与提及的过程直接相关。考虑到这些特征,结果表明,通过混合玄武岩和塞米松和菱形岩浆之间的过程产生杂交岩浆(均质卟啉嵌位),而非均相卟啉和晶石代表混合区域,从而容易识别出端子。此外,我们使用La-MC-ICPMS使用Zircon U-Pb方法的斑岩的主要岩石,由HF同位素分析辅成。地理学数据证明了与15 mA相似的岩石活动,允许Soroche斑岩与印加viejo形成的相关性。玄武岩和塞斯特产生了锆U-PB时代15.63 +/- 0.08 mA,非均相卟啉和肌腱显示为15.52 +/- 0.16mA,籽沸虫表现为15.13 +/- 0.12 mA。来自-4.9和-11.3之间的rhyodacite的同位素ε(hf)(15mA)值表明了大量的地壳分量,证明了罗莫蒂西狄岩石源于同化和回收地壳岩石可能来自下古生岩石。

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  • 来源
    《Journal of South American earth sciences》 |2021年第8期|103291.1-103291.25|共25页
  • 作者单位

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina|La Te Andes SA CONICET Las Moreras 510 A4401XBA Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Brasilia Inst Geociencias Lab Geocronol & Geoquim Isotop BR-70910900 Brasilia DF Brazil;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    Univ Nacl Salta CONICET Inst Bio & Geociencias NOA IBIGEO Av 9 Julio 14 A4405BBA Rosario De Lerma Salta Argentina;

    La Te Andes SA CONICET Las Moreras 510 A4401XBA Salta Argentina;

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  • 正文语种 eng
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  • 关键词

    Magmatic plumbing systems; Magma mixing; U-Pb geochronology; Hf isotopes; Puna; Central andes;

    机译:Magmatic管道系统;岩浆混合;U-PB地理学;HF同位素;普纳;中央安第斯山宫;

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