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首页> 外文期刊>Ofioliti >Mineralogy And Chemical Composition Of Vms Depositsof Northern Apennine Ophiolites, Italy: Evidence For The Influence Of Country Rock Type On Ore Composition
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Mineralogy And Chemical Composition Of Vms Depositsof Northern Apennine Ophiolites, Italy: Evidence For The Influence Of Country Rock Type On Ore Composition

机译:意大利北部亚平宁蛇绿岩Vms矿床的矿物学和化学组成:乡村岩石类型对矿石组成影响的证据

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摘要

In the ophiolites of the Italian northern Apennines, mantle rocks were exposed on the seafloor and eroded prior to the extrusion of pillow basalt and the deposition of pelagic sediments. Various types of VMS deposits occur at different stratigraphic positions in the ophiolite sequence. Stockwork-vein and seafloor-stratiform ore bodies are associated with serpentinized mantle peridotite and serpentinite breccia. A second group of sulfide deposits consist of crosscutting stockwork or conformable stratabound ore bodies emplaced into the pillow basalt, and seafloor-stratiform deposits located at the top of the volcanic pile, in contact with the sedimentary cover. Geochemical and mineralogical differences are observed in the ore and gangue assemblages of the deposits that were formed before the outflow of pillow basalt, and those precipitated during and after basalt extrusion. Compared with basalt-hosted sulfide deposits, the ores associated with serpentinite have a higher Cu/Zn ratio due to arnlow modal proportion of sphalerite and are enriched in the compatible elements Ni, Cr, and Mg. The Co and Ni of the ores reflect those of pyrite. The Co/Ni ratios of pyrite range from 0.29 to 1.79 (av.=0.74) in serpentinite-hosted deposits and from 1.09 to 8.0 (av.=2.59) in basalt-hosted deposits. The composition of chlorite varies from Cr-rich, Mg-clinochlore, in serpentinite-hosted deposits, to Fe-clinochlore with relatively high Mn contents, in basalt-hosted deposits. The sulfides in serpentinite contain accessory chromite that is compositionally similar to chromian spinels from abyssal peridotites. The observed geochemical variations among the various ore types are due to the interaction of the oreforming fluids with different types of country rock (ultramafic vs. mafic), which involves hydrothermal leaching of metals from the substrate, rock-fluid reactions at the site of ore deposition and the mechanical transfer of detrital material from the country rock to the ore forming-system.
机译:在意大利北部亚平宁山脉的蛇绿岩中,地幔岩石暴露在海底,并在枕形玄武岩挤出和浮游沉积物沉积之前被侵蚀。各种类型的VMS沉积物发生在蛇绿岩层序的不同地层位置。储矿脉和海底层状矿体与蛇纹化地幔橄榄岩和蛇纹岩角砾岩有关。第二类硫化物矿床由横切的储层或顺层地层顺应的矿体置于底盘玄武岩中,以及位于火山堆顶部并与沉积层接触的海底层状矿床组成。在枕形玄武岩流出之前形成的矿床和脉石组合中观察到了地球化学和矿物学差异,玄武岩挤压过程中和之后的沉积物中都观察到了地球化学和矿物学差异。与玄武岩型硫化物矿床相比,蛇纹石伴生的矿石由于闪锌矿的arnlow模态比例较高,具有较高的Cu / Zn比,并富含镍,铬和镁等相容元素。矿石中的Co和Ni反映出黄铁矿的含量。蛇纹石矿床中黄铁矿的Co / Ni比值在0.29至1.79(av。= 0.74)之间,玄武岩床矿中的Co / Ni比在1.09至8.0(av。= 2.59)之间。绿泥石的组成从蛇纹岩型矿床中富铬,镁斜绿石到玄武岩床中锰含量相对较高的铁斜绿石不等。蛇纹岩中的硫化物含有亚铬铁矿,其成分与深渊橄榄岩的铬铁尖晶石相似。在不同类型的矿石中观察到的地球化学变化是由于成矿流体与不同类型的乡村岩石(超音速与铁镁铁质)的相互作用所致,这涉及水热从基质中浸出金属,矿石现场的岩石流体反应。碎屑物质的沉积和从乡村岩石到矿石成型系统的机械转移。

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