首页> 外文OA文献 >Sulfur Isotope Ratios from VMS Deposits in the Penokean Volcanic Belt, Great Lakes Region, USA: Constraints on the Source of Sulfur in a Paleoproterozoic Intra-Arc Rift
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Sulfur Isotope Ratios from VMS Deposits in the Penokean Volcanic Belt, Great Lakes Region, USA: Constraints on the Source of Sulfur in a Paleoproterozoic Intra-Arc Rift

机译:来自VMS沉积物的硫磺同性恋比率在Penokean火山腰带,伟大的湖区,美国,​​古普罗佐内河内硫磺源的约束

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摘要

The Paleoproterozoic (~1.8 Ga) Penokean Volcanic Belt (PVB) in the Great Lakes Region of North America hosts several polymetallic volcanogenic massive sulfide (VMS) deposits. These deposits were formed by back-arc extensional volcanism during the accretion of island-arc terranes along the southern margin of the Archean Superior Craton. This study reports δ34S values obtained from sulfide minerals collected from eight VMS deposits in the PVB: Back Forty, Bend, Eisenbrey, Flambeau, Horseshoe, Lynne, Reef, and Schoolhouse. The average δ34S values from most of these deposits lie within the mantle-range between −2 and 2‰, relative to Vienna Canyon Diablo Troilite (V-CDT). Average δ34S values from Back Forty and Lynne deposits are slightly higher, at 2.5 and 2.4‰, respectively. No systematic variation in δ34S was observed based on factors such as the kind of sulfide mineral, ore-texture, type of host rock, or the nature of host-rock alteration. The narrow observed range from the PVB offers a clear indication that sulfur in the mineralizing fluid, originated predominantly from a magmatic source. If there was a significant contribution of sulfur from seawater, the δ34S of seawater sulfur must also have been close to the mantle range. Slightly higher values from Back Forty and Lynne indicate minor involvement of oxidized sulfur at shallow water levels, possibly derived from the continental margin.
机译:古元古代(〜1.8 Ga)的Penokean火山带(PVB)在北美大湖区举办几个多金属火山成因块状硫化物(VMS)矿床。这些沉积物是由弧后伸展火山岛弧地体沿太古宙高级克拉通南缘吸积过程中形成的。回到四十,弯曲,Eisenbrey,弗朗博,马蹄,琳恩,礁,以及校舍:从八个VMS矿床的PVB回收硫化矿物获得本研究报告δ34S值。从大多数这些沉积物的平均δ34S值位于幔范围-2与2之间‰,相对于维也纳峡谷暗黑硫铁矿(V-CDT)中。从返回四十平均δ34S值和林恩沉积物略高,在分别为2.5和2.4‰。基于以下因素中观察到,如一种无机硫化物,矿石纹理,主岩的类型,或宿主岩石改变的性质的中δ34S没有系统性变化。窄观察范围从PVB报价的清楚指示硫在矿化流体,主要是从岩浆源起源。如果有从海水中硫的显著贡献,海水硫的δ34S还必须已经接近地幔范围。从返回四十和林恩稍高的值表示在浅水水平,可能从大陆边缘衍生氧化的硫的次要参与。

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