首页> 外文OA文献 >Palaeozoic oolitic ironstone of the French Armorican Massif: a chemical and structural trap for orogenic base metal-As-Sb-Au mineralization during Hercynian strike-slip deformation.
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Palaeozoic oolitic ironstone of the French Armorican Massif: a chemical and structural trap for orogenic base metal-As-Sb-Au mineralization during Hercynian strike-slip deformation.

机译:法国armorican massive的古生代鲕粒铁矿石:海西期走滑变形过程中造山基底金属-as-sb-au矿化的化学和构造圈闭。

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摘要

In the Saint-Aubin-des-Châteaux quarry (Armorican Hercynian belt, western France), an epigenetic hydrothermal alteration affects an oolitic ironstone layer intercalated within the Lower Ordovician Grès armoricain Formation. The hydrothermal overprint produced pervasive and massive sulphidation with stratoid pyritized lenticular bodies within the oolitic ironstone layer. These sulphide lenses are spatially associated with strike-slip faults and extend laterally from them. Following the massive sulphidation stage (Fe-As, stage 1), subsequent fracturing allowed the deposition of base metals (stage 2) and Pb-Sb-Au (stage 3) parageneses in veins. The dominant brittle structures are vertical extension veins, conjugate shear veins and strike-slip faults of various orders. All these structures are filled with the same paragenetic sequence. Deformation analysis allows the identification of structures that developed incrementally via right lateral simple shear compatible with bulk strain affecting the Central Armorican Domain. Each increment corresponds to a fracture set filled with specific parageneses. Successive hydrothermal pulses reflect clockwise rotation of the horizontal shortening direction. Geothermometry on chlorite and arsenopyrite shows an input of hot hydrothermal fluids (maximum of 390-350°C) during the main sulphide stage 1. The subsequent stages present a marked temperature drop (300-275°C). Lead isotopes suggest that the lead source is similar for all hydrothermal stages and corresponds to the underlying Neo-proterozoic basement. Lead isotope data, relative ages of deformation and comparison with neighbouring deposits suggest large-scale fluid pulses occurred during the whole Hercynian orogeny rather than pulses restricted to the late Hercynian period. The vicinity of the Hercynian internal domain appears as a key-control for deformation and fluid flow in the oolitic ironstones which acted as a chemical and structural trap for the hydrothermal fluids. The epigenetic mineralization of Saint-Aubin-des-Châteaux appears to be very similar to epigenetic sulphidation described in BIF-hosted gold deposits.
机译:在Saint-Aubin-des-Châteaux采石场(法国西部的Armorican Hercynian带)中,表观成因的热液蚀变影响插在下奥陶纪Grèsarmericain地层中的橄榄岩铁矿层。热液叠印在橄榄铁岩层内产生了广泛的大规模硫化作用,并伴有层状黄铁化双凸透镜体。这些硫化物透镜在空间上与走滑断层相关,并从它们横向延伸。在大规模的硫化阶段(Fe-As,阶段1)之后,随后的破裂使贱金属(阶段2)和Pb-Sb-Au(阶段3)同系物在静脉中沉积。主要的脆性结构是垂直延伸脉,共轭剪切脉和各种阶的走滑断层。所有这些结构都填充有相同的同基因序列。变形分析允许识别通过与影响中央Armorican域的整体应变兼容的右侧简单剪切而逐渐发展的结构。每个增量对应于充满特定共生物的裂缝组。连续的热液脉冲反映了水平缩短方向的顺时针旋转。亚氯酸盐和毒砂的地热法显示在主要硫化物阶段1期间输入了热的热液(最高390-350°C)。随后的阶段出现明显的温度下降(300-275°C)。铅同位素表明,在所有热液阶段,铅源都相似,并且对应于潜在的新元古代基底。铅同位素数据,变形的相对年龄以及与邻近矿床的比较表明,在整个海西造山运动期间发生了大规模的流体脉动,而不是限于海西期晚期的脉动。海西内部域的附近地区似乎是对岩质铁矿中变形和流体流动的关键控制,这些铁矿是热液流体的化学和结构陷阱。 Saint-Aubin-des-Châteaux的表观成矿作用似乎与BIF托管金矿中描述的表观成因硫化作用非常相似。

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