U-Pb age and trace elements composition of titanite from granites of Belokurikhinsky massif, Gorny Altai

S. Skublov, M. E. Mamykina, N. Rizvanova
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Abstract

As a result of isotope-geochemical study, the age data (U-Pb method, ID-TIMS) of titanite from the first phase granites of the Belokurikhinsky granite massif, Gorny Altai, were obtained for the first time. The concordant value of the titanite age of 255 ± 2 Ma coincides within the margin of error with the previously published results of dating micas from granites of the second and third phases of the Belokurikha massif by the Ar-Ar method (250 ± 3 Ma). At the same time, the results of dating differ significantly from the previously published age values for the granites of the Belokurikha massif (232 ± 5 Ma, U-Pb method for the monofraction of zircon grains; 245 ± 8 Ma, Rb-Sr method for the whole rocks). Therefore, there is every reason to narrow the time interval of the formation of the Belokurikha granite massif to 255-250 Ma. The study of the trace element composition of titanite by SIMS demonstrated their zonal structure. The central part of the titanite grain differs from the rim by a noticeably higher content of REE, Cr, Y, and Nb. The content of V, Zr and Ba decreases to a lesser extent towards the rim, the content of Sr and U remains constant. At the same time, the REE distribution spectra in the central and rim parts are conformal to each other, having a convex spectrum for LREE and a concave one for HREE. Titanite is characterized by a negative Eu-anomaly, the depth of which decreases to the rim of the grain. A negative Eu-anomaly indicates the co-crystallization of titanite and plagioclase. The REE distribution spectra in titanite from the Belokurikha massif correspond to the characteristics of a typical magmatic titanite from granitoids and differ significantly from the distribution spectra in metamorphic titanite.
阿尔泰Belokurikhinsky地块花岗岩中钛矿U-Pb年龄及微量元素组成
通过同位素地球化学研究,首次获得了阿尔泰Belokurikhinsky花岗岩第一期花岗岩中钛矿的年龄数据(U-Pb法,ID-TIMS)。钛矿年龄(255±2 Ma)与前人用Ar-Ar法(250±3 Ma)测定别洛库里哈地块二、三期花岗岩云母年龄(255±2 Ma)的结果在误差范围内一致。同时,该测年结果与前人对别洛库里哈地块花岗岩年龄(232±5 Ma)的测定结果存在较大差异,锆石单组分U-Pb测年结果与前人的锆石单组分测年结果存在较大差异;245±8 Ma,全岩Rb-Sr法)。因此,有充分的理由将别洛库里卡花岗岩地块的形成时间区间缩小到255 ~ 250 Ma。用SIMS对钛矿的微量元素组成进行了研究,发现其具有带状结构。钛矿颗粒的中心部分与边缘不同,REE、Cr、Y和Nb的含量明显较高。V、Zr和Ba的含量向边缘下降幅度较小,Sr和U的含量保持不变。同时,中部和边缘部分的REE分布谱呈保角形,LREE呈凸谱,HREE呈凹谱。钛矿的特征是负eu异常,其深度下降到晶粒边缘。负eu异常指示钛矿与斜长石共结晶。别洛库里卡地块中钛矿的稀土元素分布谱符合花岗岩类中典型岩浆型钛矿的特征,与变质型钛矿的稀土元素分布谱存在显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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