Allanite in mantle eclogite xenoliths

IF 3.5 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Journal of Petrology Pub Date : 2024-04-16 DOI:10.1093/petrology/egae041
Denis S Mikhailenko, Sonja Aulbach, Aleksandr S Stepanov, Andrey V Korsakov, Le Zhang, Yi-Gang Xu
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Abstract

Rare-Earth Elements (REE) are key geochemical tracers of crust-mantle differentiation, but there are few direct data on REE-rich minerals in mantle rocks. Here, we report the combined petrography and comprehensive chemical and isotopic characterization of three coesite- and kyanite-bearing eclogite xenoliths from the Udachnaya kimberlite pipe (Siberian craton), which are unusual in that two xenoliths (one with diamond and graphite) contain discrete, idiomorphic crystals of allanite at the grain boundaries of garnet and omphacite. Another xenolith contains allanite as part of a complex aggregate of calcite, apatite, barite, and celestine hosted by serpentine, which is a low-temperature secondary minerals likely result from metasomatic reaction at shallower depths during the transport of eclogite by the erupting kimberlite melt. The bulk rock composition reconstructed from the trace element composition of garnet and omphacite show marked depletion in LREE, precluding equilibration with kimberlite melt, whereas the measured bulk compositions show chondrite-normalized REE patterns with conspicuous depletions of Ce-Pr-Nd relative to La and Sm. The presence of 0.005 – 0.008 wt. % of allanite, texturally and chemically out of equilibrium with the rock-forming minerals, allows balancing the LREE and Sm-Nd budget of the rock, whereas Th and U require additional hosts. This not only highlights the utility of measuring bulk eclogite xenoliths in bringing this unusual component to light, but also demonstrates that the long-known incompatible element enrichment in bulk eclogites reflects the deposition of discrete phases rather than merely bulk kimberlite melt addition. Although allanite is stable in metabasalts at the pressure-temperature conditions of 1025 – 1080 °C and 3.6 – 4.8 GPa recorded by the eclogite xenoliths, its association with Ba-Sr minerals suggests its formation via reaction of the host eclogites with kimberlite melt. This is supported by the similarity in 143Nd/144Nd ratios between bulk eclogite (0.51227 – 0.51249) and the host kimberlite at eruption, whereas clinopyroxene in part retains unradiogenic Sr (87Sr/86Sr = 0.70205 ± 0.00011) related to ancient depletion. The discovery of allanite in the Udachnaya eclogites demonstrates that this REE mineral can form when omphacite and grossular-rich garnet in eclogite breakdown in contact with REE- and alkali-rich carbonatite/kimberlite melt, and may be more common than hitherto recognized. Crystallization of allanite in the cratonic mantle eclogite reservoir may also help explain the difference in LREE abundances between the more strongly enriched carbonatite/kimberlite at depth and the final erupted product. It is likely that allanite is overlooked at eclogites xenoliths, while it is common accessory mineral, hosting REE in orogenic UHP/HP eclogites. Further studies are required to deciphered the peculiarities in metamorphic history recorded in eclogites xenoliths and orogenic eclogites as well as the differences ancient (Archean/Proterozoic) and Phanerozoic subduction processes.
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地幔闪长岩斜长岩中的赤铁矿
稀土元素(REE)是地壳-地幔分异的关键地球化学示踪剂,但有关地幔岩石中富含稀土元素矿物的直接数据却很少。在此,我们报告了对来自乌达奇纳亚金伯利岩管(西伯利亚克拉通)的三块含薏苡岩和褐铁矿的闪长岩异长岩进行的综合岩相学研究以及全面的化学和同位素特征描述,其中两块异长岩(一块含金刚石和石墨)在石榴石和闪长岩的晶界处含有离散的、非形态的奥氏体晶体,这一点很不寻常。蛇纹石是一种低温次生矿物,很可能是喷发的金伯利岩熔体在搬运斜长岩的过程中在较浅的深度发生变质反应而形成的。根据石榴石和闪长岩的微量元素成分重建的大块岩石成分显示出明显的 LREE 贫乏,排除了与金伯利岩熔体平衡的可能性,而测量的大块成分显示出软玉归一化的 REE 模式,Ce-Pr-Nd 相对于 La 和 Sm 有明显的贫乏。0.005-0.008重量%的绿帘石在质地和化学性质上与成岩矿物不平衡,因此可以平衡岩石的LREE和Sm-Nd预算,而Th和U则需要额外的寄主。这不仅凸显了测量大块埃洛石斜长岩以揭示这种不寻常成分的实用性,而且证明了长期以来人们所熟知的大块埃洛石中不相容元素的富集反映了离散相的沉积,而不仅仅是大块金伯利岩熔体的添加。虽然在斜长岩斜长岩记录的 1025 - 1080 °C 和 3.6 - 4.8 GPa 的压力-温度条件下,奥氏体在玄武岩中是稳定的,但它与 Ba-Sr 矿物的关联表明,它是通过主斜长岩与金伯利岩熔体的反应形成的。大块埃洛ogite(0.51227 - 0.51249)与主金伯利岩在喷发时的 143Nd/144Nd 比率相似,而部分鳞片辉石保留了与远古损耗有关的非辐射成因 Sr(87Sr/86Sr = 0.70205 ± 0.00011),也证明了这一点。在乌达奇纳亚斜长岩中发现的绿帘石表明,当斜长岩中的闪长岩和富含毛玻璃的石榴石与富含REE和碱的碳酸盐岩/金伯利岩熔体接触破裂时,就会形成这种REE矿物,而且这种矿物可能比迄今为止所认识到的更为常见。在板块地幔夕闪岩储层中的绿帘石结晶也可能有助于解释深部富集程度较高的碳酸盐岩/金伯利岩与最终喷发产物之间在 LREE 丰度上的差异。在造山超高压/超高压斜长岩中,绿帘石是常见的附属矿物,但在斜长岩析出物中,绿帘石很可能被忽视了,而在造山超高压/超高压斜长岩中,绿帘石则是常见的寄生REE矿物。需要开展进一步研究,以破译埃克洛格特闪长岩和造山运动埃克洛格特闪长岩中记录的变质历史的特殊性,以及古生代(Archean/Proterozoic)和新生代俯冲过程的差异。
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来源期刊
Journal of Petrology
Journal of Petrology 地学-地球化学与地球物理
CiteScore
6.90
自引率
12.80%
发文量
117
审稿时长
12 months
期刊介绍: The Journal of Petrology provides an international forum for the publication of high quality research in the broad field of igneous and metamorphic petrology and petrogenesis. Papers published cover a vast range of topics in areas such as major element, trace element and isotope geochemistry and geochronology applied to petrogenesis; experimental petrology; processes of magma generation, differentiation and emplacement; quantitative studies of rock-forming minerals and their paragenesis; regional studies of igneous and meta morphic rocks which contribute to the solution of fundamental petrological problems; theoretical modelling of petrogenetic processes.
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