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U-Pb isotopic ages and Hf isotope composition of zircons in Variscan gabbros from central Spain: evidence of variable crustal contamination

机译:西班牙中部瓦里斯卡长颈鹿的锆石的U-Pb同位素年龄和Hf同位素组成:可变的地壳污染的证据

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Ion microprobe U-Pb analyses of zircons from three gabbroic intrusions from the Spanish Central System (SCS) (Talavera, La Solanilla and Navahermosa) yield Variscan ages (300 to 305 Ma) in agreement with recent studies. Only two zircon crystals from La Solanilla massif gave slightly discordant Paleoproterozoic ages (1,848 and 2,010 Ma). Hf isotope data show a relatively large variation with the juvenile end-members showing εHf_i values as high as +3.6 to +6.9 and +1.5 to +2.9 in the Navahermosa and Talavera gabbros, respectively. These positive εHf_i values up to +6.9 might represent the composition of the subcontinental mantle which generates these SCS gabbros. This εHf_i range is clearly below depleted mantle values suggesting the involvement of enriched mantle components on the origin of these Variscan gabbros, and is consistent with previous whole-rock studies. The presence of zircons with negative εHf_i values suggest variable, but significant, crustal contamination of the gabbros, mainly by mixing with coeval granite magmas. Inherited Paleoproterozoic zircons of La Solanilla gabbros have similar trace element composition (e.g. Th/U ratios), but more evolved Hf-isotope signatures than associated Variscan zircons. Similar inherited ages have been recorded in zircons from coeval Variscan granitoids from the Central Iberian Zone. Granitic rocks have Nd model ages (Tdm) predominantly in the range of 1.4 to 1.6 Ga, suggesting a juvenile addition during the Proterozoic. However, Hf crustal model ages of xenocrystic Proterozoic zircons in La Solanilla gabbro indicate the presence of reworked Archean protoliths (T_(DM2) model ages of 3.0 to 3.2 Ga) incorporated into the hybridized mafic magma.
机译:离子微探针对来自西班牙中央系统(SCS)(塔拉韦拉(Talavera),拉索拉尼利亚(La Solanilla)和纳瓦黑莫萨(Navahermosa))的三个辉长岩侵入体中的锆石进行离子U-Pb分析,与最近的研究一致,得出了瓦里斯康年龄(300至305 Ma)。 La Solanilla断层中只有两个锆石晶体具有略不一致的古元古代年龄(1848年和2010Ma)。 Hf同位素数据显示相对较大的变化,少年端成员在Navahermosa和Talavera gabbros中的εHf_i值分别高达+3.6至+6.9和+1.5至+2.9。直至+6.9的这些正εHf_i值可能代表了产生这些SCS长发光的次大陆幔的组成。该εHf_i范围明显低于地幔耗尽值,表明富集的地幔组分与这些瓦里斯坎长石的起源有关,并且与先前的全岩研究一致。 εHf_i值为负的锆石的存在表明,辉长岩的地壳受到不同程度的影响,但主要是通过与同时代的花岗岩岩浆混合而造成的。 La Solanilla gabbros的继承的古元古代锆石具有相似的痕量元素组成(例如Th / U比),但与相关的Variscan锆石相比,进化出的Hf同位素特征更强。在伊比利亚中部地区的中世纪瓦里斯坎花岗岩中的锆石中也记录了相似的遗传年龄。花岗岩岩石的Nd模型年龄(Tdm)主要在1.4至1.6 Ga范围内,表明在元古生代中有幼年添加。但是,La Solanilla gabbro中的异代元古代锆石的Hf地壳模型年龄表明,混入铁镁质岩浆中存在重做的太古宙原生质岩(T_(DM2)模型年龄为3.0至3.2 Ga)。

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