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首页> 外文期刊>Russian Geology and Geophysics >Manganoan ilmenite as kimberlite/diamond indicator mineral
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Manganoan ilmenite as kimberlite/diamond indicator mineral

机译:锰锰铁钛矿作为金伯利岩/金刚石指示剂矿物

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摘要

Manganoan ilmenite was identified in Juina, Brazil kimberlitic rocks among other megacrysts. It forms oval, elongated, rimless grains comprising 8-30 wt.% of the heavy fraction. Internally the grains are homogeneous. The chemical composition of Mn-ilmenite is almost stoichiometric for ilmenite except for an unusually high manganese content, with MnO = 0.63-2.49 wt.% (up to 11 wt.% in inclusions in diamond) and an elevated vanadium admixture (V2O3 = 0.21-0.43 wt.%). By the composition, Mn-ilmenite megacrysts and inclusions in diamond are almost identical. The concentrations of trace elements in Mn-ilmenite, compared to picroilmenite, are much greater and their variations are very wide. Chondrite-normalized distribution of trace elements in Mn-ilmenite megacrysts is similar to the distribution in Mn-ilmenites included in diamond. This confirms that Mn-ilmenite in kimberlites is genetically related to diamond. The finds of Mn-ilmenite known before in kimberlitic and related rocks are late-or postmagmatic, metasomatic phases. They either form reaction rims on grains of picroilmenite or other ore minerals, or compose laths in groundmass. In contrast to those finds, Mn-ilmenite megacrysts in Juina kimberlites are a primary mineral phase with a homogeneous internal structure obtained under stable conditions of growth within lower mantle and/or transition zone. In addition to pyrope garnet, chromian spinel, picroilmenite, chrome-diopside, and magnesian olivine, manganoan ilmenite may be considered as another kimberlite/diamond indicator mineral.
机译:在巴西Juina的金伯利岩岩中发现了Manganoan钛铁矿和其他大型结晶。它形成椭圆形的,细长的,无边的晶粒,占总重量的8-30%(重量)。内部颗粒是均匀的。锰钛铁矿的化学组成几乎与钛铁矿化学计量相同,除了锰含量异常高外,锰的含量为0.63-2.49 wt。%(金刚石中的夹杂物含量最高为11 wt。%)和钒混合物含量较高(V2O3 = 0.21 -0.43重量%)。通过成分,钻石中的锰钛铁矿大晶体和夹杂物几乎相同。锰-钛铁矿中痕量元素的含量比to石-钛铁矿要高得多,并且它们的变化范围也很大。锰-钛铁矿超晶中痕量元素的球粒陨石归一化分布与金刚石中锰-钛铁矿中的微量元素分布相似。这证实了金伯利岩中的锰钛铁矿与钻石在遗传上相关。在金伯利岩和相关岩中以前已知的锰钛铁矿的发现是晚或后岩浆变质期。它们要么在微钛铁矿或其他矿石矿物的颗粒上形成反应边缘,要么在地层中构成板条。与这些发现相反,朱纳金伯利岩中的锰钛铁矿超晶是一种初级矿物相,具有在下部地幔和/或过渡带中稳定生长的条件下获得的均匀内部结构。除了长焦石榴石,铬尖晶石,微晶钛矿,铬透辉石和镁橄榄石之外,锰锰铁钛矿还可被视为另一种金伯利岩/金刚石指示剂。

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