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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Formation of magmatic titanite and titanite-ilmenite phase relations during granite alteration in the Tribec Mountains,Western Carpathians,Slovakia
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Formation of magmatic titanite and titanite-ilmenite phase relations during granite alteration in the Tribec Mountains,Western Carpathians,Slovakia

机译:斯洛伐克西喀尔巴阡山翠贝克山脉花岗岩蚀变过程中岩浆钛矿和钛铁矿-钛铁矿相关系的形成

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摘要

In this study,formation of titanite,in Carboniferous I-type granites/granitoids from the Tribec Mountains(Slovakia),and its subsequent alteration products are described.Titanite occurs in early magmatic differentiates of I-type granites/granitoids.Calculation of model mineral equilibria in the system K2O-CaO-FeO-Al2O3-TiO2-SiO2-H2O-O2(KCFATSHO)indicates that titanite forms in granites/granitoids as a consequence of a reaction between titanomagnetite,biotite,and anorthite in a fluid-rich environment under relatively oxidizing conditions,during the later stages of magma crystallisation.Evidence for this reaction can be found in low temperature inclusions of Ti-rich magnetite and biotite inclusions in the titanite,as well as in the formation of titanite not only interstitially,but also locally in quartz.The titanite alteration process has lead to the complete replacement of titanite by ilmenite,quartz,REE-bearing epidote,and allanite while preserving The characteristic euhedral,diamond shape of the former titanite.Completely altered titanite grains become optically opaque due to the presence of ilmenite.The formation of REE-bearing epidote and allanite is probably due to the release of REE from the titanite during alteration.This can be explained by model hydration reactions such as titanite+anorthite+annite+H2O=ilmenite+clinozoisite+muscovite+quartz.Calculation of mineral equilibria involving magmatic precursor minerals,such as plagioclase and biotite,indicate that the formation of ilmenite from titanite requires an influx of H2O and/or an increase in fO2.Titanite with the highest degree of ilmenite replacement occurs in a strongly mylonitized granite,in which the rock-forming minerals have been replaced by sericite,epidote,and chlorite.This breakdown of titanite to ilmenite is a common phenomenon in some granites from the southwest area of the Tribec Mountains,indicating widespread late-stage fluid activity,associated with high fO2 during the subsolidus cooling.
机译:这项研究描述了在Tribec山脉(斯洛伐克)的石炭纪I型花岗岩/类花岗岩中钛铁矿的形成及其后续的蚀变产物.Titanite发生在I型花岗岩/类花岗岩的早期岩浆分异中。模型矿物的计算系统中的平衡K2O-CaO-FeO-Al2O3-TiO2-SiO2-H2O-O2(KCFATSHO)表示,钛/磁铁矿,黑云母和钙长石在流体富集的环境中,钛磁铁矿,黑云母和钙长石之间的反应导致钛铁矿在花岗岩/类花岗岩中形成这种反应的证据可以从低温富钛的磁铁矿夹杂物和钛铁矿中的黑云母夹杂物以及钛铁矿的形成过程中发现,不仅在中间,而且在局部钛铁矿的蚀变过程导致钛铁矿被钛铁矿,石英,含稀土的枝晶和钙铝石完全替代,同时保留了特征性的全金属,菱形由于钛铁矿的存在,完全变质的钛矿晶粒变得光学不透明。含稀土的枝晶和尿囊石的形成可能是由于变质过程中钛矿释放了REE,这可以通过模型水化来解释。钛矿+钙长石+铁矿+ H2O =钛铁矿+斜硅沸石+白云母+石英的反应。涉及岩浆前体矿物(如斜长石和黑云母)的矿物平衡计算表明钛铁矿形成钛铁矿需要大量的H2O和/或强烈钛矿化的花岗岩中发生钛铁矿替代程度最高的钛铁矿,其中成岩矿物已被绢云母,闪石和绿泥石替代。这种钛矿分解成钛铁矿在某些情况下是普遍现象。特里贝克山脉西南地区的花岗岩,表明后期的流体活动广泛,与亚固相线冷却过程中的高氧气含量有关。

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