首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Tellurium, magmatic fluids and orogenic gold: An early magmatic fluid pulse at Cononish gold deposit, Scotland
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Tellurium, magmatic fluids and orogenic gold: An early magmatic fluid pulse at Cononish gold deposit, Scotland

机译:碲,岩浆液和造口金:苏格兰的Cononish金矿床早期岩浆液脉搏

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Significant tellurium enrichment occurs in many orogenic gold deposits but the factors causing this are little understood; some authors suggest this demands a magmatic input whereas others suggest it need not. Fractionation of Te from Se and S could offer insight into source/pathway processes of auriferous fluids. The metasedimentary-hosted Cononish vein gold deposit, Scotland, is unusually Te-rich compared to many orogenic gold deposits with Te/Au approximate to 2.4 whereas most orogenic deposits have Te/Au 1. Here, Ag in Au-Ag alloy increases from similar to 10 to 90 wt% through the paragenesis, correlating with decreasing hessite (Ag2Te) abundance. This suggests the Au-Ag alloy composition was controlled by the fluid Te activity, and that this decreased through time. This is coupled to an increase in pyrite delta S-34 from -2.0 parts per thousand to +11.4 parts per thousand through the paragenesis. Thus, the deposit formed from a primary fluid with a low-delta S-34 and high Te + Au + Ag that evolved to a high delta S-34-low Te, Pb + Cu bearing fluid. The high delta S-34 of the later fluid suggests it can only be sourced from specific nearby metamorphosed SEDEX horizons. The early fluid that deposited most of the gold could be sourced from other metasedimentary units in the stratigraphy or be magmatic in origin. We argue that two observations taken together suggest it is most likely that this fluid was magmatic; the age of the mineralisation is identical to the last stage of crystallization of nearby granite batholiths, and the fluid has a S-isotope signature consistent with a magmatic source. Gold deposits in orogenic belts are almost certainly polygenetic and this study demonstrates evidence for Te-rich "orogenic" deposits having a significant magmatic component.
机译:在许多造山的金矿床中发生显着的碲富集,但导致这一点的因素很少被理解;一些作者认为这需要一个魔法输入,而其他作者则表明它不需要。来自SE和S的Te的分馏可以欣赏到纤维液的源/途径过程中。苏格兰的MetaseDary托管的Enonish Vein金矿床与Te / Au近似的许多organic金沉积物相比,与2.4近似相比,而大多数造口沉积物具有TE / AU&这里,Au-Ag合金中的Ag通过寄生血管增加到10至90重量%,与嗜睡(Ag2Te)丰度的递减相关。这表明Au-Ag合金组合物由流体TE活性控制,并且这通过时间降低。这与通过平原的-2.0分别从-2.0分别达到+11.4份百分之+ +11.4份增加。因此,由具有低ΔS-34和高TE + Au + Ag的初级流体形成的沉积,其演变为高δ-34-低Te,Pb + Cu承载流体。后来流体的高ΔS-34表明它只能来自特定的附近的变形Sedex Horiphone。沉积大部分金的早期液体可以从地层中的其他元代来源中源,或者是岩浆的原产地。我们认为共同观察的两个观察表明这种液体很可能是岩浆;矿化的年龄与附近花岗岩浴溶质的结晶的最后阶段相同,并且流体具有与岩浆源一致的S-同位素签名。造山带的金矿床几乎肯定是多种遗事性,这项研究表明了具有重要岩浆组分的Te-富含“Orentenic”沉积物的证据。

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