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Subsolidus Evolution of the Magnetite-Spinel-Ulv????Spinel Solid Solutions in the Kovdor Phoscorite-Carbonatite Complex, NW Russia

机译:俄罗斯西北部科夫多(Kovdor)磷矿-碳白铁矿中磁铁矿-尖晶石-Ulv的尖晶石固溶体的亚固相演化。

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The Kovdor phoscorite-carbonatite ore-pipe rocks form a natural series, where apatite and magnetite first gradually increase due to the presence of earlier crystallizing forsterite in the pipe marginal zone and then decrease as a result of carbonate development in the axial zone. In all lithologies, magnetite grains contain (oxy)exsolution inclusions of comparatively earlier ilmenite group minerals and/or later spinel, and their relationship reflects the concentric zonation of the pipe. The temperature and oxygen fugacity of titanomagnetite oxy-exsolution decreases in the natural rock sequence from about 500 ???°C to about 300 ???°C and from NNO + 1 to NNO ?¢???? 3 (NNO is Ni-NiO oxygen fugacity buffer), with a secondary positive maximum for vein calcite carbonatite. Exsolution spinel forms spherical grains, octahedral crystals, six-beam and eight-beam skeletal crystals co-oriented with host magnetite. The ilmenite group minerals occur as lamellae oriented along {111} and {100} planes of oxy-exsolved magnetite. The kinetics of inclusion growth depends mainly on the diffusivity of cations in magnetite: their comparatively low diffusivities in phoscorite and carbonatites of the ore-pipe internal part cause size-independent growth of exsolution inclusions; while higher diffusivities of cations in surrounding rocks, marginal forsterite-rich phoscorite and vein calcite carbonatite result in size-dependent growth of inclusions.
机译:Kovdor磷钙石-碳酸盐岩-矿床管形成天然系列,其中磷灰石和磁铁矿首先由于管边缘区中较早结晶的镁橄榄石的存在而逐渐增加,然后由于轴向区碳酸盐岩的发育而减少。在所有岩性中,磁铁矿晶粒都包含较早的钛铁矿类矿物和/或较晚的尖晶石的(氧)溶质夹杂物,它们的关系反映了管道的同心圆分区。在天然岩石序列中,钛磁铁矿氧-放出物的温度和氧逸度从约500℃降低至约300℃,并且从NNO + 1降低至NNO≥3。 3(NNO是Ni-NiO氧气逸度缓冲液),对于方解石方解石碳酸盐具有次要的正最大值。溶出尖晶石形成与主体磁铁矿共取向的球形晶粒,八面体晶体,六束和八束骨架晶体。钛铁矿矿物以沿着氧溶解的磁铁矿的{111}和{100}面取向的薄片状出现。夹杂物生长的动力学主要取决于阳离子在磁铁矿中的扩散性:它们在矿石管内部的磷灰石和碳酸盐中的扩散性较低,导致析出夹杂物的尺寸独立生长;阳离子在周围岩石中的扩散性较高,边际富镁橄榄石的辉石和脉状方解石碳酸盐岩导致包裹体的尺寸依赖性生长。

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