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Alkali basalts and enclosed ultramafic xenoliths near Ushuaia Tierra Del Fuego Argentina

机译:阿根廷火地岛乌斯怀亚附近的碱性玄武岩和封闭的超镁铁质异岩

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摘要

At the southernmost part of Tierra del Fuego a few outcrops and erratic boulders of alkali basaltic rocks with ultramafic enclaves have been studied. Alkali basalt plugs or pipes hitherto identified are scarce, and host rocks are constituted by slates that belong to Mesozoic deposition. The petrography, texture and composition of the basalt and xenoliths were investigated by petrographic microscope and electron microprobe analysis. Xenocrysts of amphibole and alkali feldspar, phenocrysts of nepheline, olivine, spinel, phlogopite and Fe–Ti minerals (10 %) and a diversity of xenoliths, mainly lherzolitic, pyroxenite and wehrlitic nodules (15 %), but also from metamorphic rocks provenance, are contained in the basalt groundmass (75 %). This finer-grained material is made up of laths or needles of plagioclase, pyroxene, opaque minerals, apatite and glass, with intersertal, hyalopilitic and pilotaxitic. Locally, rock has an even granoblastic texture. Former amygdules are filled by analcite, zeolites, sodalite and calcite. The normative classification, based on nepheline content, conclude that this rock is an alkali basalt. The chemical classification, considering immobile elements as Zr/TiO2 versus Nb/Y indicate an alkali basalt too and plots over the TAS diagram fall in the foidite (Na-rich or nephelinite) and basanite fields. The REE patterns are fractionated (La/Yb primitive mantle normalized is approximately 30). The K–Ar isotopic technique on individual macrocrysts gave ages of 146 ± 5 Ma (amphibole) and 127 ± 4 Ma (alkali feldspar); and K–Ar whole rock datum reported 8.3 ± 0.3 Ma. Nevertheless, fertile samples show geochemical features typical of deep derived material thus, based on the position in the actual tectonic setting, indicate that the basalt is older than its isotopic age.
机译:在火地岛(Tierra del Fuego)的最南端,研究了一些碱岩性玄武岩与超镁铁质飞地的露头和不规则巨石。迄今为止确定的碱玄武岩塞或管道稀少,基质岩由属于中生代沉积的板岩构成。通过岩石显微镜和电子探针分析,研究了玄武岩和异岩的岩石学,质地和组成。闪石和碱长石的异晶,霞石,橄榄石,尖晶石,金云母和Fe-Ti矿物的表晶(10%)以及多种异石质,主要是鳞片石,辉石和辉绿岩结核(15%),但也来自变质岩,包含在玄武岩地基中(75%)。这种细颗粒的材料由斜长石条,辉石,不透明的矿物,磷灰石和玻璃组成的板条或针状材料组成,具有层间,透明质和弧形。就局部而言,岩石具有均匀的颗粒状纹理。前杏仁核被方沸石,沸石,方钠石和方解石填充。基于霞石含量的规范分类得出结论,该岩石是碱性玄武岩。考虑到固定元素为Zr / TiO2对Nb / Y的化学分类,也表明是碱性玄武岩,并且在TAS图上的图落在了钠长石场(富钠或霞石)和钠铁矿场中。 REE模式被分级(La / Yb原地幔归一化约为30)。单个大晶体的K-Ar同位素技术的年龄为146±5 Ma(安瓿)和127±4 Ma(碱土长石);和K–Ar整个岩石基准面报告为8.3±0.3Ma。然而,可育样品显示出深部衍生材料特有的地球化学特征,因此,基于实际构造环境中的位置,表明玄武岩的年龄早于其同位素年龄。

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