首页> 外文期刊>Contributions to Mineralogy and Petrology >Origin of peraluminous minerals (corundum, spinel, and sapphirine) in a highly calcic anorthosite from the Sittampundi Layered Complex, Tamil Nadu, India
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Origin of peraluminous minerals (corundum, spinel, and sapphirine) in a highly calcic anorthosite from the Sittampundi Layered Complex, Tamil Nadu, India

机译:来自印度泰米尔纳德邦的Sittampundi分层复合物的高钙化矿物质(刚玉,尖晶石和蓝宝石)的起源

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The highly calcic anorthosite (An(>95)) from the Sittampundi Layered Complex (SLC) develops corundum, spinel and sapphirine that are hitherto not reported from any anorthositic rocks in the world. Petrological observations indicate the following sequence of mineral growth: plagioclase(matrix) -> corundum; clinopyroxene -> amphibole; corundum + amphibole. plagioclase(corona) + spinel; and spinel + corundum. coronitic sapphirine. Phase relations in the CaO-Na2O-Al2O3-SiO2-H2O (CNASH) system suggest that corundum was presumably developed through vapour present incongruent melting of the highly calcic plagioclase during ultra-high temperature (UHT) metamorphism (T >= 1000 degrees C, P >= 9 kbar). Topological constraints in parts of the -Na2O-CaO-MgO-Al2O3-SiO2-H2O (NCMASH) system suggest that subsequent to the UHT metamorphism, aqueous fluid(s) permeated the rock and the assemblage corundum + amphibole + anorthite + clinozoisite was stabilized during high-pressure (HP) metamorphism (11 +/- 2 kbar, 750 +/- 50 degrees C). Constraints of the NCMASH topology and thermodynamic and textural modeling study suggest that coronitic plagioclase and spinel formed at the expense of corundum + amphibole during a steeply decompressive retrograde P-T path (7-8 kbar and 700-800 degrees C) in an open system. Textural modeling studies combined with chemical potential diagrams (mu SiO2-mu MgO) in the MASH system support the view that sapphirine also formed from due to silica and Mg metasomatism of the precursor spinel +/- corundum, on the steeply decompressive retrograde P-T path, prior to onset of significant cooling of the SLC. Extremely channelized fluid flow and large positive solid volume change of the stoichiometrically balanced sapphirine forming reaction explains the localized growth of sapphirine.
机译:来自Sittampundi层状复合物(SLC)的高钙钙质(SLC)的高钙钙质((> 95))发育刚玉,尖晶石和蓝宝石,其迄今未知来自世界上任何经济性岩石。岩石学观察表明以下矿物生长序列:Plagioclase(基质) - >刚玉; Clinocogoxene - >锥形锥;刚玉+锥形锥。 Plagioclase(电晕)+尖晶石;和尖晶石+刚玉。冠状素蓝宝石。 CaO-Na 2 O-Al2O3-SiO2-H2O(CNASH)系统中的相位关系表明,通过蒸气存在于超高温(UHT)变质(T> = 1000度C, p> = 9 kbar)。 -NA2O-CaO-MgO-Al2O3-SiO2-H2O(NCMASH)系统部分的拓扑约束表明,随后在UHT变质中,渗透岩石和组合刚玉+膨胀+钙基肼稳定在高压(HP)变质(11 +/- 2 kBar,750 +/- 50摄氏度)期间。 NCASH拓扑和热力学和纹理建模研究的约束表明,在开放系统中陡峭的减压逆行P-T路径(7-8 kbar和700-800℃)抵抗刚玉+锥体的冠状素Plagioclase和尖晶石。质影学建模研究与化学势图(Mu SiO2-Mu MgO)在醪系统中,支持西藏也由前体尖晶石+/-刚玉的二氧化硅和Mg偏定术形成的观点,在陡峭的压缩逆行Pt路径上,在开始显着冷却SLC之前。体内平衡的三京素形成反应的极其引导的流体流动和大的阳性固体体积变化解释了蓝宝石的局部生长。

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