Formation of corundum in direct contact with quartz and biotite in clockwise P–T trajectory from the Sør Rondane Mountains, East Antarctica

IF 0.9 4区 地球科学 Q4 MINERALOGY
T. Hokada, T. Adachi, Y. Osanai, N. Nakano, S. Baba, T. Toyoshima
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引用次数: 0

Abstract

We have found corundum in direct contact with quartz and biotite and as inclusions in garnet in the pelitic gneisses of northern Austkampane in the Northeastern (NE) Terrane of the Sør Rondane Mountains (SRM), East Antarctica. Our samples, which include corundum – bearing gneisses, show petrographic features such as staurolite inclusions in garnet, compositional zoning of orthoamphibole with Al decreasing toward the rims, and late – stage cordierite formation, and these features are characteristic of a clockwise P – T trajectory. The obser-vations are consistent with the proposed regional clockwise P – T evolution of the NE Terrane in the SRM. The corundum and other inclusions observed in the garnet porphyroblasts are interpreted to have formed owing to either staurolite breakdown or metastable crystallization relative to kyanite prior to the peak metamorphism. The close association of biotite and quartz surrounding corundum inclusions suggests fl uid – or melt – related processes. These petrographic features imply that the corundum and quartz (rarely observed in high – grade metamorphic rocks) formed as a result of metastable crystallization during the prograde stage of the clockwise P – T evolution of a
东南极洲Sør Rondane山与石英和黑云母顺时针P-T轨迹直接接触的刚玉的形成
在东南极洲南朗丹山脉(SRM)东北地体(NE)北奥斯坎板岩的泥质片麻岩中发现刚玉与石英和黑云母直接接触,并在石榴石中发现包裹体。含刚玉片麻岩样品的岩石学特征为石榴石中含有橄榄石包裹体、正角闪洞成分分带(Al向边缘递减)和晚期堇青石形成,这些特征具有顺时针P - T轨迹的特征。这些观测结果与提出的东北地体区域顺时针P - T演化一致。在石榴石卟卟母细胞中观察到的刚玉和其他包裹体被解释为是由于在变质峰前相对于蓝晶石的锆石破裂或亚稳结晶而形成的。黑云母和石英在刚玉包裹体周围的紧密结合表明与流体或熔体有关的过程。这些岩石学特征表明,在顺时针P - T演化的进阶阶段,刚玉和石英(在高变质岩中很少见到)是亚稳结晶的结果
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
5
审稿时长
>12 weeks
期刊介绍: The Journal of Mineralogical and Petrological Sciences (JMPS) publishes original articles, reviews and letters in the fields of mineralogy, petrology, economic geology, geochemistry, planetary materials science, and related scientific fields. As an international journal, we aim to provide worldwide diffusion for the results of research in Japan, as well as to serve as a medium with high impact factor for the global scientific communication Given the remarkable rate at which publications have been expanding to include several fields, including planetary and earth sciences, materials science, and instrumental analysis technology, the journal aims to encourage and develop a variety of such new interdisciplinary scientific fields, to encourage the wide scope of such new fields to bloom in the future, and to contribute to the rapidly growing international scientific community. To cope with this emerging scientific environment, in April 2000 the journal''s two parent societies, MSJ* (The Mineralogical Society of Japan) and JAMPEG* (The Japanese Association of Mineralogists, Petrologists and Economic Geologists), combined their respective journals (the Mineralogical Journal and the Journal of Mineralogy, Petrology and Economic Geology). The result of this merger was the Journal of Mineralogical and Petrological Sciences, which has a greatly expanded and enriched scope compared to its predecessors.
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