Nb–Ta mineralization in Ti-oxide minerals from the Bagolyhegy Metarhyolite Formation (Bükk Mountains, NE Hungary)

P. Eter, AL G, Norbert N Emeth, S. Andor, Szak All, N. Zajzon, Ela Feh, Istv AN Dunkl
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引用次数: 2

Abstract

The foliated low-grade metamorphic rocks of the Triassic Bagolyhegy Metarhyolite Formation, mainly of pyroclastic origin, host post-metamorphic quartz-albite veins containing abundant tourmaline and occasionally rutile/ilmenite. The study of the Ti-oxide-mineralized veins with SEM-EDX revealed an unusual mineral assemblage comprising fine-grained Nb–Ta-bearing oxides (columbite-tantalite series, fluorcalciomicrolite and other Nb–Ti–Y–Fe-REE-oxide minerals) intergrown with Nb-rich polymorphs of TiO2 (anatase, rutile), ilmenite and zircon enriched with hafnium. This high field strength elements (HFSE)-bearing paragenesis is unexpected in this lithology, and was not described from any formation in the Paleozoic-Mesozoic rock suite of the Bükk Mountains (NE Hungary) before. The host metavolcanics are significantly depleted in all HFSE compared to the typical concentrations in felsic volcanics and the mineralized quartz-albite veins have even lower Ti–Nb–Ta concentration than the host rock, so the mineralization does not mean any enrichment. From proximal outcrops of the Triassic Szentistvánhegy Metavolcanics, potassic metasomatized lenses with albite-quartz vein fillings containing rutile/ilmenite are known. We studied them for comparison, but they only contain REE mineralization (allanite-monazite-xenotime); the Nb–Ta-content of Ti-oxide minerals is undetectably low. LA-ICP-MS measurements for U–Pb dating of Hf-rich zircon of the Nb–Ta-rich mineral assemblage gave 71.5 ± 5.9 Ma as lower intercept age while dating of allanite of the REE mineralized quartz-albite veins gave 113 ± 11 Ma as lower intercept age. The REE-bearing vein fillings formed during a separate mineralization phase in the Early Cretaceous, while the Nb–Ta mineralization was formed by post-metamorphic alkaline fluids in the Late Cretaceous., controlled by fault zones and fractures.
Bagolyhegy变质流纹岩组(匈牙利东北部Bükk山脉)钛氧化物矿物中的Nb–Ta矿化
三叠纪Bagolyhegy变质流纹岩组的叶理低级变质岩,主要为火山碎屑成因,含有大量电气石和偶尔的金红石/钛铁矿的变质后石英钠长石脉。用SEM-EDX对Ti氧化物矿化脉的研究揭示了一种不寻常的矿物组合,包括细粒含Nb–Ta的氧化物(铌钽铁矿系列、氟钙石和其他Nb–Ti–Y–Fe REE氧化物矿物)与富含Nb的TiO2多晶型物(锐钛矿、金红石)、钛铁矿和富含铪的锆石共生。这种含高场强元素(HFSE)的共生作用在这种岩性中是出乎意料的,以前在Bükk山脉(匈牙利东北部)的古生代-中生代岩套的任何地层中都没有描述过。与长英质火山岩的典型浓度相比,主变质火山岩在所有HFSE中都显著贫化,矿化石英钠长石脉的Ti–Nb–Ta浓度甚至低于主岩,因此矿化并不意味着任何富集。从三叠纪Szenistvánhegy变质火山岩的近端露头来看,已知钾交代透镜体,其中含有金红石/钛铁矿的钠长石-石英脉充填物。我们对它们进行了比较研究,但它们只含有REE矿化(尿囊石独居石捕虏体);Ti氧化物矿物中Nb–Ta的含量低得无法检测。富Nb–Ta矿物组合的富Hf锆石的LA-ICP-MS U–Pb测年结果为71.5±5.9 Ma是REE矿化石英钠长石脉中尿囊岩测年的较低截距年龄,给出113±11 马作为较低的拦截年龄。含REE的矿脉填充物形成于白垩纪早期的单独矿化阶段,而Nb–Ta矿化则是由白垩纪晚期的后变质碱性流体形成的。,受断裂带和断裂控制。
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
自引率
0.00%
发文量
8
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