Insight into volcanic garnet: origin and significance of garnet as exemplified by a detailed petro-mineralogical study of the Breziny andesite (Central Slovakia Volcanic Field, Western Carpathians, Central Europe)

IF 2.5 Q2 Earth and Planetary Sciences
J. Bouloton
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引用次数: 0

Abstract

Almandine-rich garnets from a Neogene andesite of Slovakia can be divided into two main types. Garnet megacrysts are magmatic and form a chemically homogeneous group that contains, on average, about 5 wt% CaO and 4.5 wt% MgO as petrogenetically significant components. Garnets occurring in lithic fragments and garnets aggregated in garnetite lenses are characterised by Ca-poor cores (CaO <= 2 wt%) that testify for a two-step history and correspond respectively to inherited pre-anatectic and peritectic garnets. Available experimental data show that the composition of magmatic garnet megacrysts is compatible with a peritectic origin, through the fluid-absent melting of an immature metasedimentary protolith or a tonalitic gneiss. However, thermal evolution evidenced by zircons shielded in garnet rather suggests that garnet nucleated and grew by cooling of a hybrid magma pool, resulting from the complete mixing of crust- and mantle-derived melts.
火山石榴石的洞察:以布列辛尼安山岩(中欧喀尔巴阡山脉西部斯洛伐克中部火山田)的详细岩石矿物学研究为例,说明石榴石的起源和意义
斯洛伐克新近纪安山岩中富含Almandine的石榴石可分为两种主要类型。石榴石巨晶是岩浆岩,形成一个化学均匀的组,平均含有约5 wt%的CaO和4.5 wt%的MgO作为岩石成因的重要成分。出现在岩屑中的石榴石和聚集在石榴石透镜体中的石榴石的特征是贫钙核(CaO<=2wt%),这证明了两步历史,并分别对应于继承的前熔和包晶石榴石。现有的实验数据表明,通过未成熟变质沉积原岩或英云闪长质片麻岩的无流体熔融,岩浆石榴石巨晶的成分与包晶成因相兼容。然而,石榴石中屏蔽的锆石所证明的热演化表明,石榴石是通过混合岩浆库的冷却而成核和生长的,这是地壳和地幔熔体完全混合的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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