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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >The evolution of a mid-crustal thermal aureole at Cerro Toro, Sierra de Famatina, NW Argentina
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The evolution of a mid-crustal thermal aureole at Cerro Toro, Sierra de Famatina, NW Argentina

机译:西北西北部塞拉德法玛蒂纳山的塞罗托罗中地壳热光环的演化

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摘要

A more than 12 km wide sheeted tonalite complex in western Sierra de Famatina, NW Argentina, was emplaced at middle crust levels (ca. 5 kbar), coeval with regional metamorphism during an early phase of the Ordovician Famatinian orogeny (ca. 480 Ma). Advective heat from the tonalite complex caused a rise in the host regional temperatures (<700 °C)bya maximum of ca. 100 "C, developing an aureole (-3 km wide) parallel to the igneous contact This was accompanied by significant melting (ca. 40%) of the host rocks that hybridized to a variable extent with the tonalitic magmas. Three metamorphic zones were distinguished in a cross-section through the aureole: (1) an external zone consisting of metatexitic gneisses, amphibolites and minor tonalites, (2) an intermediate zone formed by screens of highly melted gneisses, amphibolites and metagabbros lying between tonalite and newly formed leucogranitoid and hybrid rock sheets, and (3) an internal zone formed almost exclusively of massive tonalite and minor hybrid rocks. Incongruent melting of biotite in gneisses of the intermediate zone produced peritectic cordierite and garnet. Hybrids resulting from variable mixing of anatectic granitoids and tonalite magma developed in the innermost part of the aureole at 750-800 °C. Increased water activity within this zone eventually promoted increased melting of plagioclase + quartz in the gneisses. Leucogranitoid magmas formed in part by extraction from the hybrid magmas led to heterogeneity of the Sr-isotope compositioa The Cerro Toro contact aureole shows that assimilation of metasedimentary rocks through partial melting can play an important role during emplacement of tonalitic magmas at mid-crustal levels.
机译:在阿根廷西北部西法拉马提纳山脉西部,一块厚度超过12 km的片状斜长石复合体置于中地壳水平(约5 kbar),与奥陶纪法马汀造山运动的早期(约480 Ma)伴随着区域变质作用同时发生。 。斜长石复合体产生的正向热量导致东道主区域温度(<700°C)上升最多约200℃。 100“ C,与火成岩接触平行发展出一个光环(-3 km宽),伴随着主体岩石的显着熔化(约40%),与成岩质岩浆不同程度地杂交。区分了三个变质带在穿过金针的横截面中:(1)外部区域由陨石片麻岩,角闪石和次要陨石组成;(2)中间区域,由中间熔融的片麻岩,闪石和变辉石的筛网形成,位于中间层和新形成的白粉刺类动物之间, (3)内部区域几乎完全由块状角质岩和次要混合岩组成,中间区片麻岩中黑云母的熔融不均匀产生了包晶堇青石和石榴石,并形成了由速成花岗岩和斜纹岩浆可变混合产生的杂化体在750-800°C的金黄色素的最内部。该区域内水活度的增加最终促进了熔渣的融化片麻岩中含碘酸酶+石英。混合岩浆中部分提取而形成的类白垩纪岩浆导致Sr-同位素组成的异质性。

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