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Geochronological and geochemical investigations on high-pressure rocks and their host rocks from the Odenwald-Spessart and Erzgebirge basement, Variscides

Geochronological and geochemical investigations on high-pressure rocks and their host rocks from the Odenwald-Spessart and Erzgebirge basement, Variscides
对瓦里西德斯 Odenwald-Spessart 和 Erzgebirge 基底的高压岩石及其主岩进行年代学和地球化学研究
批准号:
443033070
负责人:
Professor Dr. Thomas Michael Will, Ph.D.
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2020
资助国家:
德国
项目状态:
已结题
起止时间:
2019-12-31 至 2022-12-31

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中文摘要
翻译
该项目的重点是确定来自德国华力西造山带Saxothuringian带两个高压基底区的变质岩和火成岩的年龄:㈠ Odenwald-Spessart基底,它是德国中部结晶带的一部分; ㈡ Erzgebirge基底。尽管这两个基底区域对于重建华力西造山运动之前和期间的地球动力学演化具有重要意义,但这两个区域的高压变质作用的年龄目前知之甚少,范围为c. 360 ~ 330 Ma Odenwald-Spessart和c. 380到330 Ma在厄尔士山脉。计划中的研究旨在通过确定两个基底地区不同岩性的锆石、金红石和独居石的U-Pb同位素数据来解决这种不确定性。这些数据应该提供更精确的信息,关于高峰变质作用的时间,也可能关于岩石的冷却历史。此外,锆石Lu-Hf数据,连同全岩Sm-Nd同位素数据,可以用来确定样品的来源(无论是波罗的海或冈瓦纳起源),并可能有助于更好地定位的位置,在德国中部结晶带,其位置目前有争议的莱茵缝合线。此外,还计划对长英质和镁铁质火成岩进行岩石学、地球化学和同位素地球化学研究,以确定这些岩石的前体熔体形成的源区和构造环境。此外,还将确定锆石氧同位素数据,以实现这一目标。Odenwald-Spessart和Erzgebirge基底区域的特征是大量的晚造山期长英质到中间火成岩。可以预期,火成岩是由一个巨大的热异常形成的。然而,这种异常的起源是完全不清楚的,可能是由羽头或可能已在华力西造山带的最后合并板断裂有关。我们的新数据可能有助于揭示这些大量融化的原因。
英文摘要
The focus of this project is to determine the age of metamorphic and igneous rocks from two high-pressure basement areas in the Saxothuringian Zone of the Variscan Orogen in Germany: (i) the Odenwald-Spessart basement, which is part of the Mid-German Crystalline Zone and, (ii) the Erzgebirge basement. Despite the importance of the two basement areas for the reconstruction of the geodynamic evolution prior to and during the Variscan orogeny, the age of high-pressure metamorphism in both areas is currently only poorly known and ranges from c. 360 to 330 Ma in the Odenwald-Spessart and c. 380 to 330 Ma in the Erzgebirge. The planned study aims to resolve this uncertainty by determining U-Pb isotope data of zircon, rutile and monazite from different lithologies of the two basement areas. The data should provide more precise information about the timing of peak metamorphism and possibly also about the cooling history of the rocks. In addition, zircon Lu-Hf data, together with whole rock Sm-Nd isotope data, can be used to determine the provenance of the samples (either Baltica- or Gondwana-derived) and may help to better locate the position of the Rheic Suture within the Mid-German Crystalline Zone, whose position in currently debated. Furthermore, a petrological, geochemical and isotope geochemical study of felsic and mafic igneous rocks is planned to characterize the source region and the tectonic setting in which the precursor melts of these rocks formed. In addition, zircon oxygen isotope data will also be determined towards achieving this aim. The Odenwald-Spessart and Erzgebirge basement areas are characterized by large volumes of late-orogenic felsic to intermediate igneous rocks. It is to be expected that the igneous rocks formed as a result of a large thermal anomaly. However, the origin of this anomaly is entirely unclear and may have been caused by a plume head or may have been related to slab break-off during the final amalgamation of the Variscan orogen. Our new data may help to shed some light on the cause of these large volumes of melts.
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