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首页> 外文期刊>Ofioliti >FIRST OCCURRENCES OF Ni-V-Co PHOSPHIDES IN CHROMITITE FROM THE AGIOS STEFANOS MINE, OTHRYS OPHIOLITE, GREECE
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FIRST OCCURRENCES OF Ni-V-Co PHOSPHIDES IN CHROMITITE FROM THE AGIOS STEFANOS MINE, OTHRYS OPHIOLITE, GREECE

机译:希腊Athos蛇绿石的Agios Stefanos矿中铬铁矿中Ni-V-Co磷酸盐的首次出现

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Phosphide minerals, generally less than 20 urn in size, are mainly made of Ni-V-Co-Mo constituents, discovered in concentrates obtained from chromitite samples from the Agios Stefanos mine, Othrys ophiolite, Greece. Spinel from the chromitite is rich in Fe_2O_3 and very similar to chromites from podiform chromitites. Its Cr/(Cr+Al) ratios are lower than those of chromites with a boninitic affinity. On the basis of their chemical compositions, the following phosphide minerals have been identified: melliniite, nickelphosphide and two phases that can be classified as (i) either Ni-allabogdanite or Ni-barringerite, and (ii) either V-allabogdanite or V-barringerite. Under reflected-light microscope, all the inspected phosphide minerals display similar reflectance and a creamy-yellowish color, despite their different compositions. Melliniite is isotropic, while nickelphosphide shows a weak anisotropism. The Ni-allabogdanite or Ni-barringerite and V-allabogdanite or V-barringerite display a strong anisotropism. They occur associated with awaruite, pentlandite, native vanadium, vanadium sulfides, Mo-Ni-V-Co alloy (probably hexamolybdenum), Hg selenide (possible tiemmanite) and several minerals composed of Ni, As and Sb. A few of them were in contact with chromite, chlorite, quartz and glass. This mineralogical assemblage suggests that the discovered minerals are natural in origin and they do not represent an artefact related to the sample preparation. Furthermore, it is suggested that the investigated minerals have been crystallized in a local reducing geochemical environment. During the serpentinization of peridotites, reducing fluids containing dissolved H_2 are released from the reduction of H_20. Therefore, these phosphides and the associated minerals may have precipitated during the serpentinization process at low temperature. Nickel and cobalt may have been released during alteration of olivine or they were originally hosted in magmatic sulfides that were altered during the serpentinization. Phosphorous may represent an alteration product of apatite and olivine. Vanadium was probably released during the alteration of the host chromite. We speculate that Mo was originally hosted in sulfides or oxides and after its remobilization it was incorporated into the crystal lattice of the Mo-rich phases. Alternatively, the high reducing minerals of the Othrys may have formed because of the interaction of their host rock with a lightning. The stoichiometry of the analyzed phosphide minerals indicates that some grains found in the Othrys chromitites may represent new mineral species, such as Ni-allabogdanite or Ni-barringerite, as well as V-allabogdanite or V-barringerite. However, their small size and complex micro-intergrowfhs with other minerals inhibit the elaboration of an X-ray diffraction study, which would unequivocally determine their nature. To the best of our knowledge, melliniite and nickelphosphide in the Othrys chromitite represent the first finding of these rare minerals in terrestrial samples.
机译:磷矿的大小通常小于20微米,主要由Ni-V-Co-Mo成分制成,这些成分是从希腊Othrys蛇绿岩的Agios Stefanos矿的铬铁矿样品中提取的精矿中发现的。铬铁矿中的尖晶石富含Fe_2O_3,与豆状铬铁矿中的铬铁矿非常相似。它的Cr /(Cr + Al)比低于具有亲和力的亚铬酸盐。根据其化学成分,已鉴定出以下磷矿物质:硅镁石,磷化镍和两相,可分为(i)镍-钙铝石或镍-钡钙石,和(ii)钒-钙铝石或V-重晶石。在反射光显微镜下,尽管成分不同,所有检查的磷矿物质仍显示出相似的反射率和乳白色。斜方沸石是各向同性的,而磷化镍则显示出弱的各向异性。 Ni-钙铝锰矿或Ni-钡锌矿和V-钙铝锰矿或V-钡锌矿显示出很强的各向异性。它们的发生与硅酸盐,五芒硝,天然钒,硫化钒,Mo-Ni-V-Co合金(可能是六钼),硒化汞(可能是铁锰矿)以及几种由Ni,As和Sb组成的矿物有关。其中一些与亚铬酸盐,亚氯酸盐,石英和玻璃接触。这种矿物学组合表明,所发现的矿物是天然来源的,它们不代表与样品制备有关的人工制品。此外,建议所研究的矿物已在局部还原地球化学环境中结晶。在橄榄岩蛇形化过程中,H_20的还原释放出含有溶解的H_2的还原液。因此,这些磷化物和相关的矿物质可能在低温蛇形化过程中沉淀。镍和钴可能是在橄榄石蚀变过程中释放的,或者它们最初是在蛇纹石化过程中发生变化的岩浆硫化物中存在的。磷可能代表磷灰石和橄榄石的蚀变产物。钒可能是在主体亚铬酸盐的改变过程中释放的。我们推测,Mo最初以硫化物或氧化物的形式存在,并且在其迁移后被掺入富Mo相的晶格中。或者,由于其主岩与闪电的相互作用,可能形成了奥特里系高还原性矿物。分析的磷化物矿物的化学计量比表明,在奥特里斯铬铁矿中发现的某些晶粒可能代表了新的矿物种类,例如镍-钙铝石或镍-钡钙石,以及钒-钙铝石或V-钙镁石。但是,它们的体积小,与其他矿物的复杂微结合生长抑制了X射线衍射研究的进行,这无疑将决定其性质。据我们所知,Othrys铬铁矿中的硅镁石和磷化镍是在陆地样品中首次发现这些稀有矿物的方法。

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