首页> 外文期刊>Resource Geology >Platinum-Group Mineral Characterization in Concentrates from High-Grade PGE Al-rich Chromitites of Korydallos Area in the Pindos Ophiolite Complex (NW Greece)
【24h】

Platinum-Group Mineral Characterization in Concentrates from High-Grade PGE Al-rich Chromitites of Korydallos Area in the Pindos Ophiolite Complex (NW Greece)

机译:Pindos蛇绿岩综合体(希腊西北部)的Korydallos地区高品位PGE富铝富铝绿铁矿精矿中的铂族矿物特征

获取原文
获取原文并翻译 | 示例
           

摘要

The Pindos ophiolite complex, located in the north-western part of continental Greece, hosts various podiform chromite deposits generally characterized by low platinum-group element (PGE) grades. However, a few locally enriched in PPGE + Au (up to 29.3 ppm) chromitites of refractory type are also present mainly in the area of Korydallos (south-eastern Pindos). The present data reveal that this enrichment is strongly dependant on chromian spinel chemistry and base metal sulfide and/or base metal alloy (BMS and BMA, respectively) content in chromitites. Consequently, we used super-panning to recover PGM from the Al-rich chromitites of the Korydallos area. The concentrate of the composite chromitite sample contained 159 PGM grains, including, in decreasing order of abundance, the following major PGM phases: Pd-Cu alloys (commonly non-stoichiometric, although a few Pd-Cu alloys respond to the chemical formula PdCu_4), Pd-bearing tetra-auricupride [(Au,Pd)Cu], nielsenite (PdCu_3), sperrylite (PtAs_2), skaergaardite (PdCu), Pd-bearing auricupride [(Au,Pd)Cu_3], Pt and Pd oxides, Pt-Fe-Ni alloys, hollingworthite (RhAsS) and Pt-Cu alloys. Isomertieite (PcInSb_2As_2), zvyagintsevite (Pd_3Pb), native Au, keithconnite (Pd_(20)Te_7), naldrettite (Pd_2Sb) and Rh-bearing bismuthotelluride (RhBiTe, probably the Rh analogue of michenerite) constitute minor phases. The bulk of PGE-mineralization is dominated by PGM grains that range in size from 5 to 10 μm. The vast majority of the recovered PPGM are associated with secondary BMS and BMA, thus confirming that a sulphur-bearing melt played a very important role in scavenging the PGE + Au content of the silicate magma from which chromian spinel had already started to crystallize. The implemented technique has led to the recovery of more, as well as noble, PGM grains than the in situ mineralogical examination of single chromitite samples. Although, the majority of the PGM occur as free particles and in situ textural information is lost, single grain textural evidence is observed. In summary, this research provides information on the particles, grain size and associations of PGM, which are critical with respect to the petrogenesis and mineral processing.
机译:Pindos蛇绿岩复合体位于希腊大陆的西北部,拥有各种坡形亚铬铁矿床,这些矿床通常以低铂族元素(PGE)品位为特征。但是,一些局部富含PPGE + Au(最高29.3 ppm)难处理型铬铁矿也主要存在于Korydallos(东南Pindos)地区。目前的数据表明,这种富集强烈依赖于铬铁尖晶石化学性质以及铬铁矿中贱金属硫化物和/或贱金属合金(分别为BMS和BMA)的含量。因此,我们使用了超级淘选法从Korydallos地区的富含Al的铬铁矿中回收PGM。复合铬铁矿样品中的精矿含有159种PGM晶粒,其中包括含量递减的下列主要PGM相:Pd-Cu合金(通常是非化学计量的,尽管少数Pd-Cu合金对化学式PdCu_4有所响应) ,含Pd的四金铜((Au,Pd)Cu],镍铁矿(PdCu_3),闪锌矿(PtAs_2),钙铝矾石(PdCu),含Pd的金铝酸盐[(Au,Pd)Cu_3],Pt和Pd氧化物,Pt -Fe-Ni合金,硅钙石(RhAsS)和Pt-Cu合金。异构体(PcInSb_2As_2),zvyagintsevite(Pd_3Pb),天然金,keithconnite(Pd_(20)Te_7),纳德雷特(Pd_2Sb)和含Rh的双muthotelluride(RhBiTe,可能是微长石的Rh类似物)构成次要相。 PGE矿化的大部分是PGM晶粒,其尺寸范围为5到10μm。回收的大部分PPGM与次生BMS和BMA有关,因此证实了含硫熔体在清除铬铁尖晶石已经开始结晶的硅酸盐岩浆的PGE + Au含量方面起着非常重要的作用。与对单个铬铁矿样品进行原位矿物学检查相比,已实施的技术已导致回收了更多以及贵重的PGM晶粒。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,但是可以观察到单颗粒结构证据。总而言之,这项研究提供了有关PGM的颗粒,晶粒大小和缔合的信息,这些信息对成岩作用和矿物加工至关重要。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号