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首页> 外文期刊>Geological Magazine >Upper Jurassic travertine at El Macanudo, Argentine Patagonia: a fossil geothermal field modified by hydrothermal silicification and acid overprinting
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Upper Jurassic travertine at El Macanudo, Argentine Patagonia: a fossil geothermal field modified by hydrothermal silicification and acid overprinting

机译:在El Macanudo,阿根廷巴塔哥尼亚的上侏罗纪石灰华:由水热硅化和酸蜂印改性的化石地热田

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摘要

The Deseado Massif hosts numerous Late Jurassic (150 Ma) fossil geothermal systems related to an extensive volcanic event developed in a diffuse extensional back-arc setting. Detailed mapping, petrography and mineralogical observations of El Macanudo outcrops verify that it represents a hot-spring-related travertine partially replaced by silica and delineated by six sedimentary facies. These are large concentric cones (F1), laminated vertical columnar structures (F2), porous layers (F3), shrubby and irregular lamination (F4), low-amplitude wavy bedding (F5) and mounds and breccias (F6). The Macanudo Norte Outcrop rocks constitute a silica-replaced travertine sequence, with development of large conical stromatolites in a deep pool or geothermally influenced shallow lacustrine environment, surrounded by a subaerial travertine apron terrace; whereas, the Macanudo Sur Outcrop is a subaerial travertine mound sequence. Structurally controlled vent areas occur in both northern (F1) and southern (F6) outcrops, mainly located along regional NNE- and ENE-trending faults. The other sedimentary units display a concentric distribution of travertine facies with respect to the interpreted vent areas. The El Macanudo palaeo-hot spring deposit is situated in an eroded Jurassic volcanic centre, and records a complex evolutionary-fluid history. The sediments archived three different Jurassic events, when large and long-lasting hydrothermal systems were active across the region. This relative temporal sequence was formed by: (1) travertine precipitation; (2) development of a silica cap, where early silicification was responsible for exceptional preservation of some stromatolitic fabrics; and (3) acid alteration, recorded by dissolution textures and clay formation, and caused by a palaeo-phreatic water-level drop.
机译:Deseavo Massif宿主占漫长的侏罗纪(150 mA)化石地热系统,与漫反射弧弧设置开发的广泛的火山活动相关。 EL Macanudo露头的详细映射,岩石图和矿物学观察验证它代表了由二氧化硅部分替换的热弹簧相关的石斑内,并逐出六个沉积相。这些是大的同心锥体(F1),层压垂直柱状结构(F2),多孔层(F3),灌木和不规则的层压(F4),低幅度波浪床上用品(F5)和土堆和Breccias(F6)。 Macanudo Norte Outcrop Rocks构成了二氧化硅替代的石斑内序列,在深水池或地热影响的浅层湖泊环境中发展大规模锥形碎屑型,由底座石灰华围裙包围;虽然,Macanudo sur outcrop是一个子系统石灰华mound序列。在北部(F1)和南部(F6)露头的结构上受控发泄区域,主要位于区域NNE和ENE-趋势的故障。另一沉积单元显示有关解释的通风口的十字脉面的同心分布。 El Macanudo Palaeo-Hot春季矿床位于侵蚀的侏罗刊火山中心,并记录了复杂的进化流体历史。当大型和持久的水热系统在整个地区有效时,沉积物存档了三种不同的侏罗纪事件。这种相对时间序列通过:(1)石灰华沉淀物; (2)二氧化硅盖的发展,早期硅化是对一些脱盐酚织物的特殊保存负责; (3)酸改变,通过溶解纹理和粘土形成记录,并由古普瑞的水位下降引起。

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