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首页> 外文期刊>Contributions to Mineralogy and Petrology >The origin of coarse garnet peridotites in cratonic lithosphere: new data on xenoliths from the Udachnaya kimberlite, central Siberia
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The origin of coarse garnet peridotites in cratonic lithosphere: new data on xenoliths from the Udachnaya kimberlite, central Siberia

机译:克拉通岩石圈粗石榴石橄榄岩的起源:西伯利亚中部Udachnaya kimberlite的异岩的新数据

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We report new textural and chemical data for 10 garnet peridotite xenoliths from the Udachnaya kimberlite and examine them together with recent data on another 21 xenoliths from the 80–220 km depth range. The samples are very fresh (LOI near zero), modally homogeneous and large (>100 g). Some coarse-grained peridotites show incipient stages of deformation with <10 % neoblasts at grain boundaries of coarse olivine. Such microstructures can only be recognized in very fresh rocks, because fine-grained interstitial olivine is strongly affected by alteration, and may have been overlooked in previous studies of altered peridotite xenoliths in the Siberian and other cratons. Some of the garnet peridotites are similar in composition to low-opx Udachnaya spinel harzburgites (previously interpreted as pristine melt extraction residues), but the majority show post-melting enrichments in Fe and Ti. The least metasomatized coarse peridotites were formed by 30–38 % of polybaric fractional melting between 7 and 4 GPa and ≤1–3 GPa. Our data together with experimental results suggest that garnet in these rocks, as well as in some other cratonic peridotites elsewhere, may be a residual mineral, which has survived partial melting together with olivine and opx. Many coarse and all deformed garnet peridotites from Udachnaya underwent modal metasomatism through interaction of the melting residues with Fe-, Al-, Si-, Ti-, REE-rich melts, which precipitated cpx, less commonly additional garnet. The xenoliths define a complex geotherm probably affected by thermal perturbations shortly before the intrusion of the host kimberlite magmas. The deformation in the lower lithosphere may be linked to metasomatism.
机译:我们报告了来自Udachnaya金伯利岩的10个石榴石橄榄岩异种岩的新的结构和化学数据,并将它们与80-220 km深度范围内的其他21种异岩的最新数据一起进行了研究。样品非常新鲜(LOI接近零),模态均一且较大(> 100 g)。一些粗粒橄榄岩显示出初期的变形阶段,在粗橄榄石的晶界处有<10%的新胚细胞。这种微结构只能在非常新鲜的岩石中识别出来,因为细粒间质橄榄石受蚀变的强烈影响,并且在先前对西伯利亚和其他克拉通中橄榄岩异种岩蚀变的研究中可能已经忽略了。一些石榴石橄榄岩的成分与低opx的Udachnaya尖晶石harzburgites(以前被解释为原始熔体提取残留物)相似,但大多数显示出Fe和Ti的熔解后富集。交联最少的粗橄榄岩是由7至4 GPa至≤1-3 GPa的30%至38%的多分数分数熔融形成的。我们的数据和实验结果表明,这些岩石以及其他地方的一些克拉通橄榄岩中的石榴石可能是残留的矿物,与橄榄石和opx一起部分融化后仍然存在。通过熔化残渣与富铁,富铝,富硅,富钛,富稀土的熔体相互作用,使乌达恰纳雅(Udachnaya)的许多粗大且变形的石榴石橄榄岩经历了模态交代作用,这些沉淀物沉淀出cpx,而较少的是额外的石榴石。异种岩层定义了一个复杂的地热,可能在宿主金伯利岩岩浆侵入之前不久就受到热扰动的影响。下岩石圈的变形可能与交代作用有关。

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