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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >Boundaries of Intergro wths between Mineral Individuals: A Zone of Secondary MinerarFormation in Aggregates
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Boundaries of Intergro wths between Mineral Individuals: A Zone of Secondary MinerarFormation in Aggregates

机译:矿物个体之间的相互作用边界:聚集体中次生矿物形成区

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Intergrowth boundaries between mineral individuals in dunite of the Gal'moenan massif in Kory-akia was studied in terms of crystal morphology, crystal optics, and ontogenesis. The results obtained allowed us to trace the staged formation of olivine and chromite and four generations of these minerals. Micro- and nan-otopography of boundary surfaces between intergrown mineral individuals of different generations was examined with optic, electron, and atomic force microscopes. The boundaries between mineral individuals of different generations are distinguished by their microsculpture for both olivine and chromite grains. Both minerals demonstrate a compositional trend toward refinement from older to younger generations. The decrease in the iron mole fraction in olivine and chromite is accompanied by the crystallization of magnetite along weakened zones in olivine of the first generation and as outer rims around the chromite grains of the second generation observable under optic and electronic microscopes. The subsequent refinement of chromite results in the release of PGE from its lattice, as established by atomic power microscopy. The newly formed PGM are localized at the boundaries between mineral individuals and, thus, mark a special stage in the ontogenetic evolution of mineral aggregates. Further recrystallization is expressed in the spatial redistribution of grain boundaries and the formation of monomineralic intergrowth boundaries, i.e., the glomerogranular structure of rock and substructures of PGM, chromite, and olivine grains as intermediate types of organization of the granular assemblies in the form of reticulate, chain, and cellular structures and substructures of aggregates.
机译:从晶体形态,晶体光学和成因的角度研究了高丽秋葵Gal'moenan地块的榴辉岩中矿物质个体之间的共生边界。获得的结果使我们能够追踪橄榄石和亚铬铁矿的分阶段形成以及这些矿物的四代。用光学,电子和原子力显微镜检查了不同世代的矿物个体之间的边界表面的微观和纳米形貌。不同世代的矿物个体之间的边界以橄榄石和铬铁矿晶粒的显微雕刻为特征。两种矿物均显示出从老一代到年轻一代精炼的组成趋势。橄榄石和亚铬铁矿中铁摩尔分数的减少伴随着磁铁矿沿第一代橄榄石的弱化区结晶,以及在光学和电子显微镜下观察到的第二代铬铁矿晶粒周围的外缘。铬铁矿的后续精制导致PGE从其晶格中释放出来,这是通过原子能显微镜确定的。新形成的PGM位于矿物个体之间的边界处,因此,标志着矿物聚集体本体发育的一个特殊阶段。进一步的再结晶表现为晶界的空间再分布和单矿物共生界的形成,即岩石的肾小球结构以及PGM,亚铬铁矿和橄榄石晶粒的子结构,作为网状形式的颗粒集合体的中间组织类型聚集体的链,链,细胞结构和子结构。

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