首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Mineralogical and geochemical constraints on the origin and evolution of albitites from Dmytrivka at the Oktiabrski complex, Southeast Ukraine
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Mineralogical and geochemical constraints on the origin and evolution of albitites from Dmytrivka at the Oktiabrski complex, Southeast Ukraine

机译:矿物质和地球化学制约对奥基斯基复合体,东南乌克兰的奥布斯基综合体的起源和演变

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Albitites from Dmytrivka quarry form veins like bodies within fenitized alkali granites of the Oktiabrski complex. They are mainly composed of albite, and subordinately K-feldspar, zircon, aegirine, astrophyllite, pyrochlore and ilmenite. Albitites are characterized by high alkalies (Na2O + K2O) content coupled with low MgO, CaO, and SiO2 concentrations relative to host alkali granites. They show inversion of REE patterns (negative slopes for LREE and positive slopes for HREE), enrichment in HFSE (i.e. Zr, Nb, Ta), and strong Eu anomalies. The existence of rare composite of M-type and W-type REE tetrad effect in albitites indicates their complex genesis, i.e. formation during the coexistence of the melt with aqueous phase, later being superimposed by further alterations with hydrothermal solutions. The magmatic origin of albitites (evolved from highly differentiated A-type magma and emplaced at shallow depths) is documented by the presence of flow and snowball textures, zircon-aegirine glomerocrysts, no traces of replacement interfaces and reaction zones between K-feldspar and albite as well as no smooth, gradual changes in bulk-rock compositions between alkali granite, fenite vs albitite. On the contrary, the strong influence of pervasive, post-magmatic high-temperature (381-392 degrees C evidenced by CM geothermometer), and highly-oxidizing alkaline-bearing metasomatizing fluids on albitites is revealed by the occurrence of polygonal textures of albite laths, red CL luminescence of feldspars typical of fenitized rocks as well as crystallization of astrophyllite at the expense of arfvedsonite. Additionally, the presence of fluid-mineral interactions is evidenced by the development of secondary porosity and patchy zoning within zircon crystals coupled with the presence of blue (Dy3+-Tb3+-activated) and yellow (SiO4-Tb3+-activated) domains within them. All these textural, mineralogical and geochemical features observed in albitites from Dmytrivka suggest complex, magmatic-hydrothermal nature of the rocks. (C) 2019 Elsevier B.V. All rights reserved.
机译:来自Dmytrivka采石场的铝族血管形成静脉般的碱金属花岗岩中的静脉等静脉。它们主要由Albite组成,并从属于k-feldspar,锆石,AegiNe,天空管,烧纤维和ilmenite。 Albitites的特征在于相对于宿主碱花岗岩与低MgO,CaO和SiO 2浓度偶联的高碱(Na 2 O + K 2 O)含量。它们显示了Ree模式的反演(用于淋浴的阴性斜坡和HREE的正斜率),HFSE富集(即Zr,Nb,Ta)和强大的欧盟异常。在Albitites中的M型和W型REE Tetrad效应的稀有复合物的存在表明它们的复杂起因,即在熔体与水相的共存期间形成,后来通过进一步改变水热溶液而叠加。通过流动和雪球纹理,锆石 - Aegirine肾细晶的存在,Zircon-AegiNine肾细胞,在K-Feldspar和Albite之间的替代界面和反应区的存在,记录了抗血管岩石的岩石原点并从高度分化的A型岩浆中进出并从高度分化的A型岩浆中置于浅层深度。以及碱金属花岗岩之间的散装岩组合物无光滑,逐渐变化,芬特与脂肪石。相反,普遍存在的岩浆后高温(381-392℃的强烈影响,并通过Albites的多边形纹理的发生,揭示了岩石后的高温(381-392℃,并高度氧化碱性携带物质含有铝含量的碳粉化合物,义丝典型典型裂缝的红色CL发光以及Arfvedsonite费用的天空管基石结晶。另外,通过在与它们内的蓝色(DY3 + -TB3 + -iFtivated)和黄色(SiO 4-Tb3 + -igtivated)结构域的存在偶联的锆晶体中的次级孔隙率和斑块分区的发育来证明流体矿物相互作用的存在。从Dmytrivka的Albitites中观察到的所有这些纹理,矿物学和地球化学特征都表明了岩石的复杂,岩浆 - 水热性质。 (c)2019年Elsevier B.V.保留所有权利。

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