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Origin of Reverse Zoned Cr-Spinels from the Paleoproterozoic Yanmenguan Mafic–Ultramafic Complex in the North China Craton

机译:华北克拉通古元古代盐门关镁铁质-超镁铁质复合体反带状Cr-尖晶石的成因

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We conducted petrological and mineral chemistry investigations of Cr-spinel in ultramafic rocks of the Yanmenguan mafic–ultramafic complex in the North China Craton. The Cr-spinel grains occur as inclusions in enstatite, tschermakite, phlogopite, and olivine, or as interstitial grains among the aforementioned silicate minerals, and show concentric or asymmetrical textures. Back-scattered electron and elemental images and compositional profiles of the spinel grains indicate the presence of Cr- and Fe-rich cores and Al- and Mg-rich rims. The host silicate minerals display a decrease in Al and Mg contents accompanied by an increase in Cr and Fe away from the spinel. These textures and compositional variations suggest that subsolidus elemental exchange more likely gave rise to the compositional zonation, resulting in the transfer of Al and Mg from the silicate minerals to the spinel. The Mn, Ni, and Ti contents in spinel and the major elements of olivine-hosted spinel are relatively stable during subsolidus elemental diffusion and thus are more reliable tracers of primary high-temperature processes. The temperature estimates reveal that the subsolidus diffusion might have occurred at 600–720 °C, which could be linked to the regional metamorphic event.
机译:我们在华北克拉通的雁门关镁铁质-超镁铁质复合体的超镁铁质岩石中进行了Cr-尖晶石的岩石学和矿物化学研究。 Cr-尖晶石晶粒以顽辉石,钙锰矿,金云母和橄榄石中的夹杂物形式存在,或者以上述硅酸盐矿物中的间隙晶粒的形式出现,并显示出同心或不对称的织构。尖晶石晶粒的反向散射电子和元素图像以及组成轮廓表明存在富Cr和Fe的核以及富Al和Mg的轮辋。基质硅酸盐矿物的铝和镁含量降低,而远离尖晶石的铬和铁含量增加。这些质地和组成变化表明,固相元素交换更可能引起组成区带化,从而导致Al和Mg从硅酸盐矿物转移到尖晶石。尖晶石中的Mn,Ni和Ti含量以及橄榄石型尖晶石的主要元素在亚固相元素扩散过程中相对稳定,因此是初级高温过程中更可靠的示踪剂。温度估计表明,亚固相线扩散可能发生在600–720°C,这可能与区域变质事件有关。

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