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Mesozoic lithospheric mantle of the northeastern Siberian craton (evidence from inclusions in kimberlite)

机译:西伯利亚东北部的中生代岩石地幔(亚伯拉特夹杂物的证据)

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Several thousand clinopyroxene, garnet, and phlogopite inclusions of mantle rocks from Jurassic and Triassic kimberlites in the northeastern Siberian craton have been analyzed and compared with their counterparts from Paleozoic kimberlites, including those rich in diamond. The new and published mineral chemistry data make a basis for an updated classification of kimberlite-hosted clinopyroxenes according to peridotitic and mafic (eclogite and pyroxenite) parageneses. The obtained results place constraints on the stability field of high-Na lherzolitic clinopyroxenes, which affect the coexisting garnet and decrease its Ca contents. As follows from analyses of the mantle minerals from Mesozoic kimberlites, the cratonic lithosphere contained more pyroxenite and eclogite in the Mesozoic than in the Paleozoic. It virtually lacked ultradepleted harzburgite-dunite lithologies and contained scarce eclogitic diamonds. On the other hand, both inclusions in diamond and individual eclogitic minerals from Mesozoic kimberlites differ from eclogitic inclusions in diamond from Triassic sediments in the northeastern Siberian craton. Xenocrystic phlogopites from the D'yanga pipe have Ar-40/Ar-39 ages of 384.6, 432.4, and 563.4 Ma, which record several stages of metasomatic impact on the lithosphere. These phlogopites are younger than most of Paleozoic phlogopites from the central part of the craton (Udachnaya kimberlite). Therefore, hydrous mantle metasomatism acted much later on the craton periphery than in the center. Monomineral clinopyroxene thermobarometry shows that Jurassic kimberlites from the northeastern craton part trapped lithospheric material from different maximum depths (170 km in the D'yanga pipe and mostly = 130 km in other pipes). The inferred thermal thickness of cratonic lithosphere decreased progressively from similar to 260 km in the Devonian-Carboniferous to similar to 225 km in the Triassic and to similar to 200 km in the Jurassic, while the heat flux (Hast
机译:已经分析了来自侏罗纪和三叠纪金伯利特的侏罗纪和三叠纪金伯利岩的几千名临床,石榴石和冰波凝固夹杂物,并与古生代金伯利特的对应物相比,包括富含钻石的人。新的和已发表的矿物化学数据根据围类偏见和乳头(冰岩和冰曲岩)植物,为Kimberlite托管的Clinopopoocees的更新分类进行了依据。所得术的结果对高纳莱洛洛洛西冠的稳定性领域的限制,影响共存石榴石并降低其Ca含量。如下,从中生代金伯利特的披风矿物质的分析,裂缝岩石圈在中生代比古生代含有更多的曲克氏岩和eNlogite。它几乎缺乏Ultralepleted Harzburgite-dunite岩性,并包含稀缺的eClogitic钻石。另一方面,来自中生代金伯利玻璃的金刚石和个体野生矿物的两个夹杂物都与来自东北西伯利亚Craton的三叠纪沉积物的钻石中的野生动物夹杂物不同。来自D'Yanga管道的XenoCrystic Phogopites具有384.6,432.4和563.4 mA的Ar-40 / Ar-39岁,其纪录了几个对岩石圈的态态影响阶段。这些植物比Craton的中央部分(Udachnaya Kimberlite)的大部分古生代植物年轻小。因此,湿地幔偏定主义在克拉顿周边略高于中心。单数冠状弯曲热磁化法显示,来自东北Craton部分的侏罗纪金伯利纳斯从不同的最大深度捕获了岩石材料(D'Yanga管道170公里,而且在其他管道中大多是含有130公里)。克拉紧岩石圈的推断热厚度逐渐从德文人 - 石炭系中的26千米下降到三叠系中的225公里,在侏罗纪相似至200公里,而热通量(Hast

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