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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Fe-isotope fractionation in magmatic-hydrothermal mineral deposits: A case study from the Renison Sn-W deposit, Tasmania
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Fe-isotope fractionation in magmatic-hydrothermal mineral deposits: A case study from the Renison Sn-W deposit, Tasmania

机译:岩浆热液矿床中的铁同位素分馏:以塔斯马尼亚州雷尼森锡钨矿床为例

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摘要

We present 50 new iron isotopic analyses of source granite and mineral separates from the Renison tin deposit in western Tasmania. The aim of the study is to characterise the composition of minerals within a tin deposit associated with a reduced, S-type magma. We have analysed bulk samples of granite, and separates of pyrrhotite, pyrite, arsenopyrite, magnetite, chalcopyrite and siderite by multi-collector inductively coupled mass spectrometry. The isotopic compositions of mineral separates are consistent with theoretical predictions of equilibrium fractionation based on Mossbauer spectroscopy and other parametric calculations. Mineral-mineral pairs yield temperatures of formation that are in agreement with prior detailed fluid inclusion studies, but are spatially inconsistent with declining fluid temperatures with distance from the causative intrusion, limiting the use of Fe isotopes as a potential geothermometer, at least in this case. Comparison of our data with published data from other deposits clearly demonstrates that pyrite, magnetite and chalcopyrite from the hottest ore fluids (>300-400 degrees C) at Renison are isotopically heavier than minerals sampled from a deposit formed at similar temperatures, but associated with a more oxidised and less differentiated intrusion. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们目前对塔斯马尼亚西部雷尼森锡矿床的花岗岩和矿物分离物进行了50种新的铁同位素分析。该研究的目的是表征与减少的S型岩浆有关的锡矿床中的矿物成分。我们已经通过多收集器电感耦合质谱法分析了花岗岩的大块样品,并将黄铁矿,黄铁矿,毒砂,磁铁矿,黄铜矿和菱铁矿分离。矿物分离物的同位素组成与基于Mossbauer光谱法和其他参数计算的平衡分级分离的理论预测一致。矿物-矿物对产生的地层温度与先前的详细流体包裹体研究一致,但在空间上与流体温度随距致侵入物的距离下降而不一致,至少在这种情况下,限制了将铁同位素用作潜在的地热仪。我们的数据与其他矿床的已发布数据的比较清楚地表明,雷尼森最热的矿液(> 300-400摄氏度)中的黄铁矿,磁铁矿和黄铜矿的同位素比在类似温度下形成的矿床采样的矿物同位素重,但与氧化程度更高,分化程度更低的入侵。 (C)2014 Elsevier Ltd.保留所有权利。

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