首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section B. Applied Earth Science >Platinum-group mineral characterization in concentrates for low-grade PGE chromitites from the vourinos ophiolite complex, northern Greece
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Platinum-group mineral characterization in concentrates for low-grade PGE chromitites from the vourinos ophiolite complex, northern Greece

机译:希腊北部Vourinos蛇绿岩综合体中低品位PGE铬铁矿精矿中铂族矿物的表征

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The Vourinos ophiolite complex, located in northern Greece, hosts various chromite deposits characterised by very low platinum-group element (PGE) grades. Total PGE (excluding Os) concentrations in the fourteen chromitite samples collected for use in this study varied from 200 to 300 ppb. Previous reports on the platinum-group minerals (PGM) from the Vourinos chromitites, obtained data by in-situ investigation on polished sections. Consequently, we used the technique of hydroseparation to study the PGM from the concentrates in the Vourinos chromitites. More specifically, we investigated two separate composite samples from Voidolakkos and Xerolivado chromitites. The Voidolakkos concentrate sample contains 74 PGM that include: laurite (Ru,Os)S_2; irarsite (lr,Ru,Rh,Pt)AsS; erlichmanite (Os,Ru)S_2; ruthenium pentlandite; iridium (Ir(Os)); osmium (Os(lr,Ru,Pt)); secondary phases composed of Ru, Os and Cu; alloys of Ir-Fe; Rh- and Ru-Ni-Fe alloys; and Os-lr-Fe alloys. The investigation of Xerolivado concentrate sample yield 45 grains of PGM, including laurite, irarsite, erlichmanite, minor other PGE sulphides, Os-Ir-Ru alloys, iridium and secondary phases of Ru-Os alloys. PGM occur as both single and polyphase particles in both samples. The bulk of mineralisation in Voidolakkos is dominated by a finer variety (<10 mu m) of PGM than the Xerolivado sample (mainly <20 mu m). The former occurrence hosts considerably more altered PGM grains, less laurite and a larger variety of PGM than the latter, whereas Os-Ir alloys are present in almost equal amounts in both samples. The hydroseparation process has recovered significantly more, as well as novel, PGM grains than were known from previous in-situ mineralogical examination of single chromitite samples. Although, most of the PGM occur as free particles and in-situ textural information is lost, single grain textural evidence is observed. The mineralogical and grain size differences between the two samples may reflect styles of mineralization and indicate significant remobilization of PGE. The latter possibility is suggested by the presence of secondary PGM, which may be related to the different alteration processes that affect the Voidolakkos and Xerolivado chromitites. In summary, this study provides significant new information on the particles, grain size and associations of PGM, which are critical with respect to the petrogenesis and mineral processing of these minerals.
机译:位于希腊北部的Vourinos蛇绿岩综合体拥有各种铬铁矿床,其特征是铂族元素(PGE)等级非常低。收集用于本研究的十四个铬铁矿样品中的总PGE(不包括Os)浓度在200到300 ppb之间。以前有关Vourinos铬铁矿中铂族矿物(PGM)的报道,是通过对抛光切片进行现场调查获得的。因此,我们使用加氢分离技术研究了来自Vourinos铬铁矿精矿中的PGM。更具体地说,我们研究了两种分别来自Voidolakkos和Xerolivado铬铁矿的复合样品。 Voidolakkos精矿样品包含74种PGM,包括:月桂石(Ru,Os)S_2; irarsite(lr,Ru,Rh,Pt)AsS;钙锰矿(Os,Ru)S_2;钌方锰矿;铱(Ir(Os)); (Os(lr,Ru,Pt));由Ru,Os和Cu组成的第二相;铱铁合金Rh-和Ru-Ni-Fe合金;和Os-lr-Fe合金。对Xerolivado精矿样品进行的研究可得到45粒PGM,包括月桂石,铁矾石,钙锰矿,其他少量PGE硫化物,Os-Ir-Ru合金,铱和Ru-Os合金的第二相。 PGM在两个样品中均以单相和多相颗粒形式存在。与火山岩样品(主要是<20μm)相比,Voidolakkos中大部分的矿化作用是由更精细的(<10μm)PGM决定的。前者比后者具有更多的改变的PGM晶粒,更少的月桂酸盐和更多种类的PGM,而两种样品中Os-Ir合金的含量几乎相等。与以前的单个铬铁矿样品的原位矿物学检查相比,加氢分离过程已回收了更多的PGM颗粒以及新颖的PGM颗粒。尽管大多数PGM以游离颗粒形式存在,并且原位结构信息丢失,但可以观察到单颗粒结构证据。两个样品之间的矿物学和粒度差异可能反映了矿化方式并表明PGE的显着迁移。后一种可能性是由次要PGM的存在暗示的,它可能与影响Voidolakkos和Xerolivado铬铁矿的不同蚀变过程有关。总而言之,这项研究提供了有关PGM的颗粒,晶粒大小和缔合的重要新信息,这些信息对于这些矿物的成因和矿物加工至关重要。

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