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首页> 外文期刊>Mineralogical Magazine >Mineralogy of complex Co-Ni-Bi vein mineralization, Bieber deposit, Spessart, Germany
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Mineralogy of complex Co-Ni-Bi vein mineralization, Bieber deposit, Spessart, Germany

机译:复杂的Co-Ni-Bi脉矿化矿物学,比伯矿床,斯佩萨特,德国

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Post-Variscan vein-type Co-Ni-Bi ores of the Bieber deposit, Spessart mountains, Germany, which are related to the Permian Kupferschiefer, have been investigated by ore microscopy, X-ray powder diffraction and electron-probe microanalysis. The samples contain a variety of ore minerals, notably skutterudite, native bismuth, cobaltite, alloclasite, niccolite, maucherite, gersdorffite, rammelsbergite/pararammelsbergite, safflorite, loellingite and emplectite. The ores display structures indicative of multiple brecciation and complex zoned arsenide assemblages. Three sequential stages of deposition are identified, which are (1) the Cu stage, (2) the main Co-Ni-Bi stage, and (3) the late stage. The arsenide minerals, notably skutterudite, diarsenides and sulpharsenides, sow a large range of compositional variation in Co-Ni-Fe space. A relatively limited number of skutterudite and diarsenide compositions lie outside the compositional fields established in the literature. Skutterudite and diarsenides are characterized by a significant substitution of As by S up to 0.44 a.p.f.u. and 0.31 a.p.f.u., respectively, which is larger than the range previously reported for these minerals. Sulpharsenides compositions can be grouped into three populations, which conform to cobaltian arsenopyrite, cobaltite and gersdorffite. They display highly variable As/S ratios between 0.95:1.00 and 1.29:0.73, consistent with experimental data. Estimates of the formation temperatures, based on the presence of dendritic native bismuth and emplectite, are in the range 100-300 deg C, similar to different post-Variscan mineralization styles widespread in Central Europe. Comparison f the Co-Ni-Bi vein assemblage with the framework of available paragenetic information and radiometric are data for regional mineralization events indicates an age of mineralization of approx 150-160 Ma for the Bieber deposit.
机译:与二叠纪Kupferschiefer有关的德国比斯伯山的比伯矿床的后瓦里斯卡纳脉型Co-Ni-Bi矿石已通过矿石显微镜,X射线粉末衍射和电子探针显微分析进行了研究。样品中包含各种矿石矿物,特别是方钴矿,天然铋,钴矿,金属硅酸盐,尼古莱石,球铁矿,硅藻土,拉美铁石/副拉美铁石,红铁矿,菱镁矿和蒙脱石。矿石显示的结构表明有多次角砾石化和复杂的分区砷化物组合。确定了三个连续的沉积阶段,分别是(1)Cu阶段,(2)Co-Ni-Bi主阶段和(3)后期。砷化物矿物,尤其是方钴矿,二砷化物和硫代砷化物,在Co-Ni-Fe空间播散了很大范围的成分变化。相对有限数量的方钴矿和二砷化物组合物位于文献中确定的组成领域之外。 Skutterudite和diarsenides的特征是As被A显着取代,直至0.44a.p.f.u。和分别为0.31 a.p.f.u.,这比以前报道的这些矿物的范围大。 Sulpharsenides的成分可以分为三个种群,分别符合钴毒砂,钴铁矿和锗辉石。它们显示出0.95:1.00和1.29:0.73之间高度可变的As / S比,与实验数据一致。基于树枝状天然铋和闪锌矿的存在,地层温度的估计范围为100-300摄氏度,类似于中欧广泛分布的瓦里斯坎矿床之后的不同矿化方式。将Co-Ni-Bi脉组合与可用的共生信息和放射线学框架进行的区域矿化事件数据进行比较表明,比伯矿床的矿化年龄约为150-160 Ma。

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