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首页> 外文期刊>Minerals >Metamorphic and Metasomatic Kyanite-Bearing Mineral Assemblages of Thassos Island (Rhodope, Greece)
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Metamorphic and Metasomatic Kyanite-Bearing Mineral Assemblages of Thassos Island (Rhodope, Greece)

机译:Thassos岛(希腊罗多彼州)的变质和变质蓝晶石矿物组合

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The Trikorfo area (Thassos Island, Rhodope massif, Northern Greece) represents a unique mineralogical locality with Mn-rich minerals including kyanite, andalusite, garnet and epidote. Their vivid colors and large crystal size make them good indicators of gem-quality materials, although crystals found up to now are too fractured to be considered as marketable gems. The dominant lithology is represented by a garnet–kyanite–biotite–hematite–plagioclase ± staurolite ± sillimanite paragneiss. Thermodynamic Perple_X modeling indicates conditions of ca. 630–710 °C and 7.8–10.4 kbars. Post-metamorphic metasomatic silicate and calc-silicate (Mn-rich)-minerals are found within (i) green-red horizons with a mineralogical zonation from diopside, hornblende, epidote and grossular, (ii) mica schists containing spessartine, kyanite, andalusite and piemontite, and (iii) weakly deformed quartz-feldspar coarse-grained veins with kyanite at the interface with the metamorphic gneiss. The transition towards brittle conditions is shown by Alpine-type tension gashes, including spessartine–epidote–clinochlore–hornblende-quartz veins, cross-cutting the metamorphic foliation. Kyanite is of particular interest because it is present in the metamorphic paragenesis and locally in metasomatic assemblages with a large variety of colors (zoned blue to green/yellow-transparent and orange). Element analyses and UV-near infrared spectroscopy analyses indicate that the variation in color is due to a combination of Ti 4+ –Fe 2+ , Fe 3+ and Mn 3+ substitutions with Al 3+ . Structural and mineralogical observations point to a two-stage evolution of the Trikorfo area, where post-metamorphic hydrothermal fluid circulation lead locally to metasomatic reactions from ductile to brittle conditions during Miocene exhumation of the high-grade host-rocks. The large variety of mineral compositions and assemblages points to a local control of the mineralogy and f O 2 conditions during metasomatic reactions and interactions between hydrothermal active fluids and surrounding rocks.
机译:Trikorfo地区(希腊北部罗多彼州地块的Thassos岛)代表着独特的矿物学位置,其锰矿物质丰富,包括蓝晶石,红柱石,石榴石和橄榄石。它们鲜艳的色彩和较大的晶体尺寸使它们成为宝石级材料的良好指示,尽管迄今为止发现的晶体过于破碎,无法被视为可销售的宝石。占优势的岩性表现为石榴石-蓝晶石-黑云母-赤铁矿-斜长石±星形石±硅线石长石。热力学Perple_X建模表明条件约。 630–710°C和7.8–10.4 kbar。在(i)透辉石,角闪石,附生植物和粒状矿物学带的绿红色层中发现了变质后代交代硅酸盐和钙硅酸盐(富锰)矿物,(ii)含有斯巴沙汀,蓝晶石和红柱石的云母片岩(iii)石英长石的粗粒脉弱变形,在变质片麻岩的界面处带有蓝晶石。向高山脆性条件的过渡表现为高山型张力裂缝,包括斯巴沙汀-依必泰-斜生绿藻-角闪石-石英脉,横切了变质的叶脉。蓝晶石特别受关注,因为它存在于变质共生体中,并局部存在于交联组合中,具有多种颜色(从蓝色到绿色/黄色透明和橙色)。元素分析和紫外-近红外光谱分析表明,颜色变化是由于Ti 4+ –Fe 2+,Fe 3+和Mn 3+被Al 3+取代所致。结构和矿物学观察表明,Trikorfo地区经历了两个阶段的演化,在变质后的热液循环中,局部地导致了高品位岩体中新世发掘过程中从延性到脆性的变质反应。矿物组成和组合的种类繁多,表明在交代反应和热液活性流体与围岩之间的相互作用过程中,对矿物学和f O 2条件的局部控制。

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