新雅库特西部Ukukit油田列宁格勒金伯利岩管道下独特的含角闪岩地幔柱

Ashchepkov Iv
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摘要

在列宁格勒管道(西Ukukit油田)下的亚克拉通岩石圈地幔(SCLM)中,雅库特石榴石热压测量可以识别出7个层位(古俯冲板)。对地幔捕虏体和富集物中>500粒含Cr角闪石的微探针数据显示,含Cr角闪石的组成范围广泛,从Cr-寄生角闪石到寄生角闪石、岩屑角闪石、角闪石角闪石,К-richterites随压力的增加而变化,低压(LP) Cr-角闪石角闪石和寄生角闪石组成了从3.5 GPa到Moho的高温分支(90-60 mw/m2),由玄武岩堆积追踪。在SCLM中部,地温为35 ~ 40 mw/ m2。在高压下,角陨石的热条件也会发生变化。岩石圈底部附近的Richterites显示低温和高温对流分支。角闪石可分为9个化学组。与角闪石共存的熔体具有凹型,这是与俯冲有关的熔体的典型特征。LP品种在HFSE(除Zr外)、Pb中表现为Eu、Rb、Ba、Sr峰和深谷。寄生体表现出较高的U峰和相对较小的HFSE洼地。随着岩体、kataforites和richterise压力的增加,U和Zr的峰值升高,Th、Sr、Nb和Hf的下降减弱,Nb、Ta、Hf的下降减弱,Zr的峰值减小,LREE和REE也下降。斜辉石和石榴石表现出不同的微量元素模式和分组,具有羽流和俯冲特征。Ta和Nb的对比行为受原生榴辉岩的金红石分配系数的调控。俯冲作用和Na、K(硅质)型流体通过富含榴辉岩的地幔渗透,可能在整个地幔柱中发生了不同程度的角闪作用。地幔柱熔体与地幔交代组合产生杂交作用,在反应矿物斜辉石中形成更光滑的微量元素图案。提出了单矿物角闪孔测温的新方法。
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Unique Amphibole-Bearing Mantle Column Beneath the Leningrad Kimberlite Pipe, West Ukukit Field, NE Yakutia
In the subcratonic lithospheric mantle (SCLM) beneath Leningrad pipe (West Ukukit field), Yakutia garnet thermobarometry allows us to identify seven horizons (paleo subduction slab). Microprobe data for Cr-bearing amphiboles >500 grains from mantle xenoliths and concentrates reveal a broad range of compositions changing from Cr- pargasitic hornblendes to pargasites, edinites, kataforites, К-richterites with increasing pressure determined with new amphibole thermobarometer constructed by the first author The low pressure (LP) Cr-hornblendes and pargasites compiles the high-temperature branch (90-60 mw/m2) from 3.5 GPa to Moho traced by basaltic cumulates. In the middle part of SCLM edinites mark 35 to 40 mw/ m2 geotherms. At high pressures kataforites also vary in thermal conditions. Richterites near the lithosphere base trace both low –and high temperature convective branches. The amphiboles reveal divisions into 9 chemical groups. The melts coexistion with amphiboles has concave patters typical for subduction related melts. LP varieties reveal Eu inflection U, Rb, Ba, Sr peaks and deep troughs in HFSE (except Zr), Pb. The pargasites show high U peaks and relativle less HFSE depressions. Encreasing in pressure for edinites, kataforites and richterise are accompanied byrise in U and Zr peak gentling of depressions in Th, Sr, Nb and Hf and less in Nb,Ta, Hf and peak in Zr and also decrease in LREE and REE. Clinopyroxenes and garnets show variable trace element patterns and divisions in groups with the plume and subduction signatures. The contrasting behaviour of Ta and Nb is regulated by the rutile partition coefficients likely for primary eclogites. A subduction and Na and K (siliceous) type of fluids percolated through the mantle with abundant eclogites possibly was accompanied by amphibolization at the different levels through all the mantle column. The plume melts produced hybridism with the mantle metasomatic assembleges which created smoother trace element patterns in reacted minerals, clinopyroxene. The new version of monomineral amphibole thermobarometry is suggested.
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