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Insights into petrogenesis of the Jálama pluton (Central Iberian Zone, western Spain)

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DataCite Commons2020-09-02 更新2024-07-25 收录
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The Jálama pluton (JP) is a Variscan peraluminous granitoid that intruded into low-grade metasediments from the Central Iberian Zone (CIZ). It comprises a sillimanite-bearing two-mica monzogranite in the inner zone, followed by a tourmaline-bearing two-mica monzogranite, and a marginal tourmaline-muscovite leucogranite in the northern half of the pluton. Microgranitoid enclaves and metasedimentary xenoliths occur locally in monzogranites. The change in rock type from the central monzogranite to the marginal leucogranite corresponds to decreasing TiO<sub>2</sub>, MgO, FeO, CaO, Sr, Ba, Zr, and ΣREE, and increasing SiO<sub>2</sub>, Na<sub>2</sub>O, P<sub>2</sub>O<sub>5</sub>, Rb, Li, Cs, Ta, Sn, and W. Fe/(Fe+Mg) ratios in biotite, muscovite and tourmaline increase with increasing Fe/(Fe+Mg) in bulk rock, suggesting an important control of the bulk-rock composition on mineral chemistry. The high peraluminosity, the low CaO and high P contents, as well as the similarity of <i>ε</i>(Nd)<sub>300</sub> values in both the granites and metasediments of the southern CIZ constitute strong evidences for a crustal origin of the granite suite, probably by melting of these metasedimentary rocks. Field and petrographic observations, together with mineralogical and geochemical data, suggest that assimilation and mingling/mixing acted in concert with fractional crystallization during the formation of the JP. These processes may also have been important in the evolution of other granitoids from this region.

哈拉马深成岩体(Jálama Pluton, JP)是一处华力西期过铝质花岗岩类岩体,侵入于伊比利亚中部带(Central Iberian Zone, CIZ)的低级别沉积变质岩系中。该岩体内部带为含矽线石的二云母二长花岗岩,向外依次发育含电气石的二云母二长花岗岩,岩体北半部则分布边缘相含电气石-白云母淡色花岗岩。二长花岗岩体内局部可见微花岗质包体与沉积变质岩捕虏体。从中心二长花岗岩至边缘淡色花岗岩的岩性转变,伴随着全岩TiO₂、MgO、FeO、CaO、Sr、Ba、Zr及总稀土元素(ΣREE)含量逐渐降低,而SiO₂、Na₂O、P₂O₅、Rb、Li、Cs、Ta、Sn及W含量逐步升高。黑云母、白云母与电气石的Fe/(Fe+Mg)比值随全岩Fe/(Fe+Mg)比值升高而增大,表明全岩组成对矿物化学特征具有显著控制作用。高过铝度、低CaO含量与高P含量,以及伊比利亚中部带南部花岗岩与沉积变质岩的ε(Nd)₃₀₀值相似性,均为该花岗岩套起源于地壳提供了有力证据,其成因可能为上述沉积变质岩系的熔融作用。野外与岩石学观察结果,结合矿物学与地球化学数据表明,哈拉马深成岩体的形成过程中,分离结晶作用与同化混染、岩浆混合/混熔作用协同发生。该演化过程对该区域其他花岗岩类岩体的成因演化同样具有重要参考价值。
提供机构:
Taylor & Francis
创建时间:
2017-04-21
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