elmaslar铬铁矿床的贱金属(BM)和铂族元素(PGE)矿物学和地球化学:对当地BM和PGE富集的意义

IF 1.2 4区 地球科学 Q2 GEOLOGY
Mehmet Akbulut, Ö. Pi̇şki̇n, S. Arai, I. Özgenç, Fevzi Minareci
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引用次数: 13

摘要

Elmaslar铬铁矿(ECD)位于土耳其德尼兹利(Denizli),由铬铁矿组成,铬铁矿在枯竭的辉锌矿中被高度难熔的替代白云石包裹。铬铁尖晶石成分富铬,表明其来源于超俯冲带下的辉长质熔体-橄榄岩相互作用。球粒陨石归一化PGE模式显示Ir-group (IPGE)优于Pd-group PGE (PPGE),这与蛇绿质足状铬铁矿的总体特征一致。ECD原生PGM共生主要由褐铁矿-辉长石系列组成,含Pd相较少。Osrich褐铁矿的优势大于os -贫褐铁矿,表明在铬铁矿结晶过程中初始fS2较高。它还表明铬铁矿母熔体的冷却速度较慢。铁长石与铁长石共存表明在铬铁矿结晶后期砷活性增加。一个特殊的接触带样品显示出异常高的PPGE含量和正斜球粒陨石归一化的PGE模式。这种富集可归因于两个阶段的过程:(i)原生和局部硫饱和;(ii)随后的次生热液蚀变导致PGE的小尺度再活化和沉淀。由于没有关于样品地质背景的直接现场证据,因此没有提出原生和局部硫饱和阶段的赋存模式。然而,很明显,这一事件的影响是有限的,并不是广泛的。PGE的二次富集主要是由于蛇纹石成矿过程中流体的引入。在ECD储层中发现的角闪石-辉石-尖晶石-硅质-碳酸盐岩尤为突出。这些岩石在ECD中次生PGE富集中的作用仍有待研究。它们标志着ECD中进一步的低温二氧化碳交代作用,并为研究铬铁矿中次生PGE的发生提供了有希望的指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Base metal (BM) and platinum-group elements (PGE) mineralogy and geochemistry of the elmaslar chromite deposit (Denizli, sw turkey): implications for a local BM and PGE enrichment
The Elmaslar Chromite Deposit (ECD) in Denizli (SW Turkey) consists of chromitite enveloped by highly refractory replacive dunite within a depleted harzburgite. The composition of chromian spinel is Cr-rich suggesting derivation from boninitic melt-peridotite interaction beneath a supra-subduction zone. The chondrite normalized PGE patterns show predominance of Ir-group (IPGE) over Pd-group PGE (PPGE) that is consistent with ophiolitic podiform chromitites in general. The primary PGM paragenesis of ECD mainly consists of laurite-erlichmanite series with minor Pd bearing phases. Dominance of Osrich laurite over the Os-poor ones suggests initially high fS2 during crystallization of chromitite. It also indicates a slow cooling rate of the chromitite parent melt. Coexistence of irarsite with erlichmanite suggests increase in As activity during late stages of chromitite crystallization. One peculiar contact zone sample with disseminated-massive chromitite enveloped by dunite shows unusually high PPGE content and positive-sloped chondrite normalized PGE pattern. This enrichment is attributed to a two stage process: (i) primary and local sulfur saturation, (ii) followed by secondary hydrothermal alteration causing smallscale remobilization and precipitation of PGE. No mode of occurrence is suggested for the primary and local sulfur saturation stage, because there is no direct field evidence on the geological setting of the sample. However, it is clear that the effects of this event were limited and not deposit wide. The secondary enrichment of PGE is mainly attributed to introduction of fluids during serpentinization. The amphibole-pyroxene-spinel-silica-carbonate rocks found in the stockpiles of ECD are remarkable. The role of these rocks, in the secondary PGE enrichment in ECD stays to be questioned. They mark further low-temperature CO2-metasomatism in ECD and provide promising indicators for investigating secondary PGE occurrences in chromitites.
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来源期刊
Ofioliti
Ofioliti 地学-地质学
CiteScore
2.40
自引率
7.70%
发文量
1
期刊介绍: Since 1976, Ofioliti provides an international forum for original contributions and reviews in the field of the geodynamics, petrology, geochemistry, biostratigraphy, stratigraphy, tectonics and paleogeography applied to ophiolitic terrains and modern oceanic lithosphere, including their sedimentary cover. Studies of topics such as geodynamics of the mantle, the evolution of orogens including ophiolites and paleoceanography are also welcome
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