东萨扬地区乌里克-亚地堑的金伯利岩:矿物组成、地球化学和形成条件

IF 0.8 Q4 GEOCHEMISTRY & GEOPHYSICS
V. Savel'eva, Yu. V. Danilova, E. P. Bazarova, B. Danilov
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引用次数: 1

摘要

对宝沙亚塔格纳碱性碳酸盐岩地块及其邻区进行了矿物组成、矿物化学组成、Riphean晚期(约645 Ma)脉脉和脉脉中无辉石质碱性苦橄岩的成岩和微量元素分布,并与Bushkanai金伯利岩-苦橄岩脉进行了对比研究。无辉石苦橄岩中的斑晶以橄榄石(代替蛇纹石)和绿云母为代表;主体由蛇纹石、绿云母、蒙脱石、方解石等组成;没有异晶的透辉石和铬。苦橄岩中的绿云母和铬尖晶石与金伯利岩中的这些矿物化学性质相似,但尖晶石成分的演化符合钛磁铁矿的趋势;monticelite在forsterite (Mg2SiO4)中被耗尽。岩石中含有非典型的金伯利岩,而是含碳酸盐的超镁铁质煌斑岩、类球晶岩所固有的镁方解石和锰钛矿。无辉石苦荞铁矿的SiO2(28.4 ~ 33.2)、Al2O3(3.2 ~ 5.6)、Na2O(0.01 ~ 0.05)含量较低(wt %);TiO2含量较高(2.0-3.3),К2О含量较高(0.45-1.33);MgO(16.1 ~ 24.1)、СаО(12.9 ~ 22.8)、СО2(1.1 ~ 12.2)、Ni (260 ~ 850ppm)、Cr (840 ~ 2200ppm)含量变化;和Mg # = 0.73 - -0.80。脉体中Th、U、Nb、Ta、La、Ce的含量比原始地幔高约两个数量级;微量元素的光谱与南非和雅库安金伯利岩的光谱不同。在不含辉石的苦橄岩和Bushkanai岩脉中,Nb/U、Nb/Th、Th/Ce、La/Nb和Zr/Nb比值与洋岛玄武岩(OIB)相似,表明源熔体中主要是再循环组分。在研究碳酸石榴石辉橄榄石熔融的实验中,无辉石的碱性苦味石在5-6 GPa下熔融。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
KIMBERLITE-LIKE ROCKS OF THE URIK-IYA GRABEN, EASTERN SAYAN REGION: MINERAL COMPOSITION, GEOCHEMISTRY AND FORMATION CONDITIONS
The study of the Bol’shaya Tagna alkaline-carbonatite massif and adjacent areas was focused on the mineral and chemical compositions of minerals, the distribution of petrogenic and trace elements in pyroxene-free alkaline picrites in veins and dikes dated at the late Riphean (circa 645 Ma), and comparison with the Bushkanai kimberlite-picrite dike. Phenocrysts in the pyroxene-free picrites are represented by olivine (replaced with serpentine) and phlogopite; the bulk is formed by serpentine, phlogopite, monticellite, calcite, etc .; xenocrysts of pyrope and chrome diopside are absent. Phlogopite and Cr-spinel from the picrites are chemically similar to these minerals in kimberlites, but the evolution of the spinel compositions corresponds to the titanomagnetite trend; monticellite is depleted in forsterite (Mg2SiO4). The rocks contain strontianite, burbankite, titanium andradite, calcirtite and Mn-ilmenite, which are not typical of kimberlites, but are inherent in carbonate-bearing ultramafic lamprophyres, ayllikites. The pyroxene-free picrites have low contents (wt %) of SiO2 (28.4‒33.2), Al2O3 (3.2‒5.6), and Na2O (0.01‒0.05); relatively high contents of TiO2 (2.0‒3.3), and К2О (0.45‒1.33); varying contents of MgO (16.1‒24.1), СаО (12.9‒22.8), СО2 (1.1‒12.2), Ni (260‒850 ppm), and Cr (840‒2200 ppm); and Mg#=0.73‒0.80. The contents of Th, U, Nb, Ta, La, and Ce in the veins are approximately two orders higher than those in the primitive mantle; the spectra of trace elements differ from the spectra of the South African and Yakuian kimberlites. In the pyroxene-free picrites and the rocks of the Bushkanai dike, the Nb/U, Nb/Th, Th/Ce, La/Nb, and Zr/Nb ratios are similar to those in ocean island basalts (OIB) and thus give evidence of the leading contribution of the recycled component into the source melt. In experiments conducted to investigate melting of carbonated garnet lherzolite, the pyroxene-free alkaline picrites melted at 5–6 GPa.
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来源期刊
Geodynamics & Tectonophysics
Geodynamics & Tectonophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.20
自引率
14.30%
发文量
95
审稿时长
24 weeks
期刊介绍: The purpose of the journal is facilitating awareness of the international scientific community of new data on geodynamics of continental lithosphere in a wide range of geolchronological data, as well as tectonophysics as an integral part of geodynamics, in which physico-mathematical and structural-geological concepts are applied to deal with topical problems of the evolution of structures and processes taking place simultaneously in the lithosphere. Complex geological and geophysical studies of the Earth tectonosphere have been significantly enhanced in the current decade across the world. As a result, a large number of publications are developed based on thorough analyses of paleo- and modern geodynamic processes with reference to results of properly substantiated physical experiments, field data and tectonophysical calculations. Comprehensive research of that type, followed by consolidation and generalization of research results and conclusions, conforms to the start-of-the-art of the Earth’s sciences.
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