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首页> 外文期刊>Exploration and Mining Geology >A Physical Volcanological, Chemostratigraphic, and Petrogenetic Analysis of the Little Falls Member, Tetagouche Group, Bathurst Mining Camp, New Brunswick
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A Physical Volcanological, Chemostratigraphic, and Petrogenetic Analysis of the Little Falls Member, Tetagouche Group, Bathurst Mining Camp, New Brunswick

机译:新不伦瑞克省巴瑟斯特采矿营地Tetagouche组的小瀑布成员的物理火山学,化学地层学和岩石成因分析

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The Little Falls member of the Nepisiguit Falls Formation is situated in the northern part of the Brunswick Belt of the Bathurst Mining Camp and has been interpreted as the distal equivalent of proximal tuffaceous rocks that host the stratiform Brunswick No. 12 and No. 6 Pb-Zn massive sulfide deposits. It comprises fine-grained, greenish-gray tuffaceous sandstone in the lower part, and coarse-grained, crystal-rich tuffaceous sandstone in the upper part. Petrographic evidence suggests that these rocks have a turbiditic origin. The Little Falls member is underlain by the Vallee Lourdes member, mainly composed of relatively shallow-water calcareous rocks, and is conformably overlain by Mn-rich sedimentary rocks, mainly red argillites that host the Tetagouche Falls Mn-(Fe) deposit. All these rocks are considered to belong to the Nepisiguit Falls Formation, part of the Ordovician Tetagouche Group. Whole-rock geochemical data from the fine-grained tuffaceous sandstone and coarse-grained tuffaceous sandstone indicate that the two units of the Little Falls member are distinct. Zr and TiO_2 contents, and total rare earth element (REE) values are higher in the coarse-grained unit (average Zr/TiO_2 = 0.040, average SIGMA REE = 247 ppm, n = 6) than in the fine-grained unit (average Zr/TiO_2 = 0.048, average SIGMA REE = 158 ppm, n = 17), which can be attributed to the variation in crystal content between the two units. Both units are HREE-enriched and have elevated La/Yb relative to the typical Nepisiguit Falls Formation. Overall, the geochemical data combined with evidence from the bounding units suggest that the Little Falls member was deposited in relatively shallow water, possibly in a near-arc environment. The relationship of volcanic facies within the Nepisiguit Falls Formation and the geochemistry of these facies indicate strongly that fine grained, reworked tuffaceous rocks, regardless of whether they are the distal equivalents of proximal tuffaceous rocks, are not associated with the major ore-bearing horizons of the Bathurst Mining Camp.
机译:Nepisiguit瀑布组的Little Falls成员位于巴瑟斯特采矿营区不伦瑞克带的北部,并被解释为包含层状不伦瑞克12号和6号Pb-锌块状硫化物矿床。它的下部包括细粒,灰绿色的凝灰质砂岩,而上部则由粗粒,富含晶体的凝灰质砂岩组成。岩石学证据表明,这些岩石具有湍流起因。小瀑布成员由Vallee Lourdes成员所掩盖,后者主要由相对浅水的钙质岩石组成,并被富锰的沉积岩(主要是带特塔古奇瀑布Mn-(Fe)矿床的红色泥质岩)覆盖。所有这些岩石都被认为属于奥陶纪特塔古奇群的一部分Nepisiguit瀑布组。来自细粒凝灰质砂岩和粗粒凝灰质砂岩的全岩地球化学数据表明,小瀑布成员的两个单元是不同的。粗粒度单位(平均Zr / TiO_2 = 0.040,平均SIGMA REE = 247 ppm,n = 6)中的Zr和TiO_2含量以及总稀土元素(REE)值高于细粒度单位(平均Zr / TiO_2 = 0.048,平均SIGMA REE = 158 ppm,n = 17),这可归因于两个单元之间晶体含量的变化。相对于典型的Nepisiguit Falls地层,这两个单元都富含HREE,并且La / Yb升高。总的来说,地球化学数据与边界单元的证据表明,小瀑布成员沉积在相对浅的水中,可能是在近弧环境中。 Nepisiguit瀑布组内的火山相与这些相的地球化学之间的关系强烈表明,细粒的,经过重做的凝灰岩,无论它们是否是近端的凝灰岩的远侧等效物,都与该岩层的主要含矿层无关。巴瑟斯特采矿营。

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