首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Paleoproterozoic crustal evolution in the East Sarmatian Orogen: Petrology, geochemistry, Sr-Nd isotopes and zircon U-Pb geochronology of andesites from the Voronezh massif, Western Russia
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Paleoproterozoic crustal evolution in the East Sarmatian Orogen: Petrology, geochemistry, Sr-Nd isotopes and zircon U-Pb geochronology of andesites from the Voronezh massif, Western Russia

机译:东萨马提山造山带的古元古代地壳演化:俄罗斯西部沃罗涅日地块安山岩的岩石学,地球化学,Sr-Nd同位素和锆石U-Pb年代学

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Andesites and related plutonic rocks are major contributors to continental growth and provide insights into the interaction between the mantle and crust. Paleoproterozoic volcanic rocks are important components of the East Sarmatian Orogen (ESO) belonging to the East European Craton, although their petrogenesis and tectonic setting remain controversial. Here we present petrology, mineral chemistry, bulk chemistry, Sr-Nd isotopes, and zircon U-Pb geochronological data from andesites and related rocks in the Losevo and Vorontsovka blocks of the ESO. Clinopyroxene phenocrysts in the andesites are depleted in LREE, and enriched in HFSE (Th, Nb, Zr, Hf, Ti) and LILE (Ba, Sr). Based on the chemistry of pyroxenes and whole rocks, as well as Fe-Ti oxides, we estimate a temperature range of 1179 to 1262 degrees C, pressures of 11.3 to 13.0 kbar, H2O content of 1-5 wt.%, and oxygen fu gacity close to the MH buffer for the melts of the Kalach graben (KG) and the Baygora area (BA) andesites. Our zircon U-Pb geochronological data indicate new zircon growth during the middle Paleoproterozoic as displayed by weighted mean Pb-207/Pb-206 ages of 2047 +/- 17 Ma and 2040 +/- 16 Ma for andesite and dacite-porphyry of the BA, and 2050 +/- 16 Ma from high-Mg basaltic andesite of the KG. The andesites and related rocks of the KG and BA are characterized by high magnesium contents (Mg # up to 0.68). All these volcanic rocks are depleted in LREE and HFSE, and display negative Nb and Ti anomalies relative to primitive mantle. The high-Mg bulk composition, and the presence of clinopyroxene phenocrysts suggests that the parent melts of the KG and BA suite were in equilibrium with the mantle rocks. The rocks show positive epsilon Nd(T) values and low initial Sr-87/Sr-86, suggesting that the magmas were mostly derived from metasomatized mantle source. The geochemical differences between the two andesite types are attributed to: the predominance of fractional crystallization, and minor role of contamination in the case of KG andesites in contrast to the higher degree of contamination with continental crustal lithologies and/or dacitic melts for the BA andesites. Furthermore, the upper mantle source of the KG andesites is inferred to be metasomatically enriched in comparison with the hydrous mantle source of the BA magmas. We propose post-collisional setting for both the high-Mg andesites of the KG and normal andesites of the BA, with magma generation through partial melting of enriched mantle sources. (C) 2016 Elsevier B.V. All rights reserved.
机译:安山岩和相关的深成岩是大陆生长的主要贡献者,它们为地幔与地壳之间的相互作用提供了见识。古元古代火山岩是属于东欧克拉通的东萨尔马多造山带(ESO)的重要组成部分,尽管其成岩作用和构造环境仍存在争议。在这里,我们介绍了ESO Losevo和Vorontsovka块中安山岩及相关岩石的岩石学,矿物化学,本体化学,Sr-Nd同位素和锆石U-Pb地质年代数据。安山岩中的次氯环己烯表晶在LREE中被耗尽,并在HFSE(Th,Nb,Zr,Hf,Ti)和LILE(Ba,Sr)中富集。根据辉石和整个岩石以及Fe-Ti氧化物的化学性质,我们估计温度范围为1179至1262摄氏度,压力为11.3至13.0 kbar,H2O含量为1-5 wt%,氧气靠近MH缓冲区的空位,用于Kalach en石(KG)和Baygora地区(BA)安山岩的熔体。我们的锆石U-Pb年代学数据表明,在古元古代中期,锆石的安山岩和镁铁矿斑岩的加权平均Pb-207 / Pb-206年龄分别为2047 +/- 17 Ma和2040 +/- 16 Ma,表明新的锆石生长。 BA,以及来自KG的高镁玄武质安山岩的2050 +/- 16 Ma。 KG和BA的安山岩及相关岩石的特征是镁含量高(Mg#高达0.68)。所有这些火山岩中的LREE和HFSE均已耗尽,相对于原始地幔显示负Nb和Ti异常。高镁的大块成分,以及次氯环己烯苯晶的存在表明,KG和BA套件的母体熔体与地幔岩石处于平衡状态。岩石显示出正εNd(T)值和较低的Sr-87 / Sr-86初始值,表明岩浆主要来自交代地幔源。两种安山岩类型的地球化学差异可归因于:部分结晶的优势,以及在KG安山岩的情况下污染的作用较小,而BA安山岩对大陆地壳岩性和/或大晶质熔体的污染程度较高。 。此外,与BA岩浆的含水地幔源相比,KG安山岩的上地幔源据推测在交代富集。我们建议对KG的高Mg安山岩和BA的正常安山岩进行碰撞后定位,并通过富集地幔源的部分熔融产生岩浆。 (C)2016 Elsevier B.V.保留所有权利。

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