首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Long-lived magmatic systems and implications on the recognition of granite-pegmatite genetic relations: Characterization of the Pavia granitic pegmatites (Ossa-Morena Zone, Portugal)
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Long-lived magmatic systems and implications on the recognition of granite-pegmatite genetic relations: Characterization of the Pavia granitic pegmatites (Ossa-Morena Zone, Portugal)

机译:岩浆系统的长寿命及其对花岗岩-斜晶石遗传关系识别的影响:帕维亚花岗岩伟晶岩的特征(葡萄牙奥萨-莫雷纳地区)

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摘要

It is generally accepted that pegmatites are derived from large masses of granite but, even in areas where complete mineralogical, chemical and isotopic datasets are available, the relation between pegmatites and host granitic rocks or nearby plutons is usually not simple to address. The Pavia pluton, located in the Ossa-Morena Zone (Iberian Massif), is a multiphase intrusive body constructed over similar to 11 m.y. by the amalgamation of several batches of magma. At the first glance, pegmatites seem to constitute a very homogeneous pegmatite field. They are mainly "intragranitic" thin tabular dikes, unzoned, layered, or with simple internal structure and are composed by the ordinary minerals that constitute the different classes of igneous rocks. They also present identical whole rock major and trace elements geochemistry and isotopic signature [(Sr-87/Sr-86)(i) = 0.70434-0.70581, epsilon Nd-t = -1.3 to -3.7 and delta O-18 = 8.2-9.6 parts per thousand] but, based on previously published geochronological data, three generations of pegmatites were identified. Two of these are coeval with the emplacement of the host granites (s.l.) at 328 Ma and ca. 324 Ma. The other is related to a later magmatic event at 319-317 Ma. A similar and rather juvenile source is suggested for host granites (SI) and pegmatites but a simple and continuous process of intra-chamber magmatic differentiation is not supported by our data. It is suggested that pegmatites derived from slightly evolved batches of magma that interacted with fresh, newly emplaced, batches (from the same or from a similar source) with limited interaction with the crust. Therefore, the Pavia pegmatites do not represent the final products of magmatism at this level of the crust but slightly differentiated products of different batches of magma. This study demonstrates how long-lived magmatic systems can potentially affect the recognition of granite-pegmatite genetic relationships. (C) 2014 Elsevier GmbH. All rights reserved.
机译:伟晶岩来源于大量花岗岩,这是公认的,但是,即使在有完整的矿物学,化学和同位素数据集的地区,伟晶岩与宿主花岗岩或附近的云母之间的关系通常也不容易解决。位于Osa-Morena地带(伊比利亚地块)的Pavia岩体是多相侵入体,构造成类似于11m.y。由几批岩浆合并而成。乍一看,伟晶岩似乎构成了非常均匀的伟晶岩场。它们主要是“带内”薄板状堤坝,没有分区,分层或内部结构简单,由构成不同类火成岩的普通矿物组成。他们还表现出相同的整体岩石主要和微量元素地球化学和同位素特征[(Sr-87 / Sr-86)(i)= 0.70434-0.70581,εNd-t = -1.3至-3.7,δO-18 = 8.2-千分之9.6],但根据先前发表的年代学数据,鉴定出三代伟晶岩。其中两个与328 Ma和ca. 324毫另一个与后来在319-317 Ma发生的岩浆事件有关。对于寄主花岗岩(SI)和伟晶岩,建议使用类似且相当幼小的来源,但我们的数据不支持腔室内岩浆分异的简单而连续的过程。有人认为伟晶岩是从岩浆中略有演化的一批中衍生出来的,这些岩浆与新鲜,新近放置的一批岩浆(来自相同或相似的来源)相互作用,与地壳的相互作用有限。因此,帕维亚伟晶岩在地壳水平上并不代表岩浆作用的最终产物,而是不同批次岩浆的略有差异的产物。这项研究表明,长寿命岩浆系统将如何潜在地影响对花岗岩-透辉石遗传关系的认识。 (C)2014 Elsevier GmbH。版权所有。

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