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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >TRACE ELEMENT SIGNATURE OF PYRITE FROM THE LOS COLORADOS IRON OXIDE-APATITE (IOA) DEPOSIT, CHILE: A MISSING LINK BETWEEN ANDEAN IOA AND IRON OXIDE COPPER-GOLD SYSTEMS?
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TRACE ELEMENT SIGNATURE OF PYRITE FROM THE LOS COLORADOS IRON OXIDE-APATITE (IOA) DEPOSIT, CHILE: A MISSING LINK BETWEEN ANDEAN IOA AND IRON OXIDE COPPER-GOLD SYSTEMS?

机译:来自Los Colorados氧化铁 - 磷灰石(IOA)矿床,智利的痕量元素特征,智利:Andean IOA和氧化铁铜金系统之间的缺失联系?

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摘要

Although studies have proposed that iron oxide-apatite (IOA) deposits may represent the deeper roots of some Andean iron oxide copper-gold (IOCG) systems, their genetic links remain obscure and controversial. A key question when considering an integrated genetic model is whether a magmatic-hydrothermal fluid that precipitates massive magnetite will continue transporting significant amounts of dissolved Fe, Cu, and Au after IOA precipitation. Here we provide new geochemical data for accessory pyrite from the Los Colorados IOA deposit in the Chilean iron belt that confirm the role of this sulfide as a relevant repository for economic metals in IOA deposits. Pyrite occurs at Los Colorados as disseminated grains and as veinlets associated with magnetite and actinolite that postdate the main igneous magnetite stage. Electron probe microanalysis (EPMA) data for pyrite show anomalously high Co and Ni concentrations (up similar to 3.9 and similar to 1.5 wt %, respectively) and relatively high As contents (100s of ppm to a maximum of similar to 2,000 ppm). When combined with results from secondary ion mass spectrometry (SIMS) spot analyses, pyrite data show significant amounts of Cu that range from sub-ppm values (similar to 100 ppb) up to 1,000s of ppm, plus nonnegligiblc concentrations of Zn, Ph, Cd, Sb, Se, and Te (up to 100 ppm). The highest contents of Cu measured (wt % level) most likely record the presence of Cu-bearing submicron-sized mineral inclusions. Contents of Au and Ag are up to 1 and 10 ppm, respectively, with maximum concentrations that can rise up to 800 ppm Au and 300 ppm Ag due to the presence of submicron-sized inclusions. The high Co/Ni ratios of pyrite from Los Colorados are consistent with a magmatic-hydrothermal origin associated with a greater mafic affinity, compared to pyrite from porphyry Cu deposits. Furthermore, the geochemical signature of Los Colorados pyrite shares important similarities of composition and microtexture with the few published data for pyrite from IOCG deposits (e.g., Ernest Henry, Australia, and Manto Verde, Chile). These findings, combined with recent geochemical and isotopic studies that support an igneous origin for the dike-shaped magnetite orebodies at Los Colorados, point to a magmatic source of mafic to intermediate composition for the contained metals, and support the hypothesis that IOA systems can source Fe-Cu-Au-rich fluids. Based on experimental studies, these IOA-derived fluids may continue transporting significant amounts of metals to from IOCG mineralization at shallower levels in the crust.
机译:虽然研究提出了氧化铁 - 磷灰石(IOA)沉积物可以代表一些Andean氧化铁铜金(IoCG)系统的更深根,但它们的遗传链接仍然模糊不清。在考虑综合遗传模型时的关键问题是沉淀大量磁铁矿的岩浆 - 水热流体是否将继续在IOA沉淀后继续运输大量的溶解Fe,Cu和Au。在这里,我们为来自智利铁带的Los Colorados IOA沉积物提供了新的地球化学数据,该数据是智利铁带中的沉积物,证实了该硫化物作为IOA沉积物中经济金属的相关储存库的作用。黄铁矿在Los Colorados作为散发粒子和与磁铁矿相关的veinlets,并且静脉曲化物相关,使得主要的火成磁铁矿阶段。黄铁矿的电子探针微透析(EPMA)数据显示异常高CO和Ni浓度(同样为3.9和类似于1.5wt%),并且与含量相对较高(100s ppm至最大类似于2,000ppm)。当与二次离子质谱(SIMS)点分析的结果结合时,黄铁矿数据显示出大量的Cu,其范围从亚ppm值(类似于100ppb)高达1,000s的ppm,加上Zn,pH的非Negligiblc浓度, CD,Sb,se和te(高达100ppm)。测量的Cu的最高含量(wt%水平)最有可能记录Cu的亚微米大小的矿物质夹杂物的存在。 Au和Ag的含量分别高达1和10ppm,由于存在亚微米的夹杂物,最大浓度可达800ppm和300ppm Ag。与来自卟哚Cu沉积物的硫铁斯相比,来自Los Colorados的岩浆吡啶石的高CO / Ni比率与与更大的麦克风亲和力相关的岩浆 - 水热源。此外,Los Colorados硫铁矿的地球化学特征与来自IoCG沉积物的少数发表的黄铁矿(例如,Ernest Henry,Australia和Manto Verde,智利)分享了组成和微纹理的重要相似性。这些发现结合了最近的地球化学和同位素研究,该研究支持Los Colorados的堤防磁铁矿Orebodies的火焰状起源,指向含有金属的中间组合物的MAFIC的岩浆来源,并支持IOA系统可以源的假设Fe-Cu-Au的液体。基于实验研究,这些IOA衍生的流体可以继续将大量的金属从外壳中的较浅的水平传递到IoCG矿化。

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