条带霞石岩:高品位地壳中地壳岩浆生成、分段安置和流体驱动矿物置换的结果(南极洲中部Droning Maud地)

IF 1.5 4区 地球科学 Q2 GEOLOGY
Journal of Geology Pub Date : 2021-06-09 DOI:10.1086/715789
A. Engvik, F. Corfu, I. Kleinhanns, S. Elvevold
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引用次数: 0

摘要

我们对南极洲Droning Maud Land的Mühlig Hofmannfjella带状紫苏岩杂岩的研究表明,高温(再)结晶过程、熔体和挥发性流体的结合如何导致复杂的侵入、交代和结构关系。火成岩杂岩由缓倾的霞多丽岩组组成,其间夹有粗玄岩和浅色花岗岩。带状杂岩主要由岩浆作用形成,但有交代作用的叠加修饰。紫苏岩成分为铁质,同时含有斜方辉石(Fs80–84)和橄榄石(Fa94–96)。锆石U-Pb确定了紫苏岩的侵位时间为515 Ma,继承的锆石岩芯和负εNd值为−3至−5表明岩浆源的年龄约为1100 Ma。在寒武纪岩浆事件期间,钕同位素不均匀,这表明岩浆的生成和侵位是在带状杂岩建造过程中分批次发生的。相比之下,紫苏花岗岩中的Rb-Sr系统被广泛均质化,这可能是因为叠加的晚期岩浆流体活动,这也产生了浅色花岗岩的带和网络。这些事件发生在冈瓦纳大陆组装的晚期,碰撞后伸展和地幔上升流保持了高热流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Banded Charnockite: The Result of Crustal Magma Generation, Piecemeal Emplacement, and Fluid-Driven Mineral Replacement in High-Grade Crust (Central Dronning Maud Land, Antarctica)
Our study of a banded charnockite complex of the Mühlig-Hofmannfjella in Dronning Maud Land, Antarctica, illustrates how the combination of high-temperature (re-)crystallization processes, melts, and volatile fluids leads to complex intrusive, metasomatic, and structural relationships. The igneous complex consists of gently dipping sets of charnockite interlayered with dolerite and leucogranite. The banded complex formed primarily by magmatic processes, but with superimposed modifications by metasomatism. The charnockite has a ferroan composition and contains both orthopyroxene (Fs80–84) and olivine (Fa94–96). Zircon U-Pb dates the emplacement of charnockite at 515 Ma, and inherited zircon cores and negative εNd values of −3 to −5 indicate that the age of the source of the magma was about 1100 Ma. Neodymium isotopes were not homogenized during the Cambrian magmatic event, which suggests that the generation and emplacement of the magma took place in separate batches during construction of the banded complex. By contrast, the Rb-Sr system in the charnockite was extensively homogenized, likely because of the superimposed late-magmatic fluid activity, which also produced the bands and networks of leucogranites. These events occurred during the late stages of the assembly of Gondwana, with postcollisional extension and mantle upwelling maintaining a high heat flow.
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来源期刊
Journal of Geology
Journal of Geology 地学-地质学
CiteScore
3.50
自引率
5.60%
发文量
0
审稿时长
3 months
期刊介绍: One of the oldest journals in geology, The Journal of Geology has since 1893 promoted the systematic philosophical and fundamental study of geology. The Journal publishes original research across a broad range of subfields in geology, including geophysics, geochemistry, sedimentology, geomorphology, petrology, plate tectonics, volcanology, structural geology, mineralogy, and planetary sciences. Many of its articles have wide appeal for geologists, present research of topical relevance, and offer new geological insights through the application of innovative approaches and methods.
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