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The meillers Autunian hydrothermal chalcedony : first evidence of a similar to 295 Ma auriferous epithermal sinter in the Frech Massif Central.

机译:梅勒斯奥图尼亚热液玉髓:在Frech Massif Central的第一个类似于295 Ma的铁质超热烧结矿的初步证据。

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摘要

The Meillers "quartzite" deposit represents a major hydrothermal siliceous sinter, some 50 m thick and covering an area of some 30 ha within Autunian sandstone of the northern Massif Central. This siliceous sinter comprises three facies of microcrystalline quartz: (i) a dark-colored facies (black chalcedony), locally rich in pyrite, at the base, (ii) a gray-brown fairly massive facies (gray-brown chalcedony) in the middle; and (iii) a white, finely banded, facies (white chalcedony) at the top. Orientation measurements of the banding have revealed the paleo-flow channels of the silica-saturated fluids. The geochemistry of the deposits shows modest metal values, in particular for gold (average of 0.58 g/t Au, giving a gold metal content of some 20 t). The hydrothermal event is stratigraphically well correlated with the basal Autunian (around 295 Ma); an age that has been confirmed through radiochronological determination (300±21 Ma; SHRIMP on hydrothermal zircon). The lead isotopic composition is not very radiogenic (206Pb/204Pb=18.20) and is similar to that of the Late Hercynian gold lodes in the Massif Central. The mineralized sinter appears to have derived from a geyser-type hot springs. This hydrothermal activity coincides with the auriferous metallogenic peak that occurred in the Hercynides around 300 Ma. This is the first known epithermal-type surface manifestation described for the Hercynian gold event.
机译:梅勒斯的“石英岩”矿床是一个主要的热液硅质烧结矿,厚约50 m,占地块中部北部Autunian砂岩内约30公顷。这种硅质烧结矿包括三个微晶石英相:(i)在基部局部富含黄铁矿的深色相(黑玉髓),(ii)在底部的灰褐色相当大的相(灰褐色玉髓)。中间; (iii)顶部为白色细条状相(白色玉髓)。带的取向测量已经揭示了二氧化硅饱和流体的古流动通道。矿床的地球化学显示出适中的金属值,特别是对于金(平均值为0.58 g / t Au,金金属含量约为20 t)。热液事件在地层上与基底Autunian(约295 Ma)有很好的相关性;通过放射年代学确定的年龄(300±21 Ma;热液锆石上的SHRIMP)。铅的同位素组成不是很容易放射化(206Pb / 204Pb = 18.20),与地块中部的晚期海西金矿相似。矿化的烧结矿似乎源于间歇泉式温泉。这种热液活动与在300 Ma附近的Hercynides中出现的金铁成矿峰相吻合。这是针对海西金矿事件描述的第一个已知的超热型表面表现。

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