地幔对流与钻石

V. Puchkov, D. A. Zedgenizov
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引用次数: 1

摘要

研究课题。地球动力学理论的当前演化阶段与地幔中不同层次的热化学对流的思想有关,其中离心分支由羽流代表,向心俯冲带代表。的目标。对钻石的研究有助于了解特定钻石的起源时间、地幔的水平、P-T条件和地球化学环境,然后通过离心对流输送到地球表面,从而允许对这种流动进行表征。材料和方法。通过对已发表材料的归纳和对金刚石矿物包裹体的表征,阐明了不同时代、不同地区地幔对流的总体结构。结果。金刚石中矿物包裹体数据、共生矿物P-T条件实验数据和地幔物性地球物理数据表明,金刚石的形成深度从上地幔上部下部岩石圈(≈150 ~ 250 km)到下地幔底部不等。与此同时,含矿物包裹体的钻石,作为下地幔的特征,只占钻石总数的百分之一。结论。来自不同起源深度的钻石的运输是地幔中对流过程(作为羽流活动)的可靠指示。这些信息为羽流的真实存在提供了证据,这在正在进行的关于其起源深度的讨论中是重要的。然而,钻石,特别是超深层钻石中的矿物包裹体的研究是一项具有挑战性的任务,因为它们在到达表面的过程中会发生逆行变化、再吸收,有时甚至完全溶解。这些情况降低了超深层钻石出现的可能性,在判断超深层钻石是否存在时需要考虑这些因素。
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Mantle convection and diamonds
Research subject. The present evolutionary stage of geodynamic theory is associated with the idea of thermochemical convection of various levels in the Earth's mantle, where the centrifugal branches are represented by plumes, and the centripetal - by subduction zones. Aim. The study of diamonds contributes to an understanding of when, at what level in mantle, under what P-T conditions and geochemical environment particular diamonds originated, which were then transported by centrifugal convection flows to the Earth's surface, thereby permitting characterization of this flow. Materials and methods. Generalization of published materials and characterization of mineral inclusions in diamonds allow the general structure of mantle convection to be clarified in different epochs and different regions. Results. The data obtained on mineral inclusions in diamonds, along with the experimental data on the P-T conditions of their mineral parageneses and geophysical data on mantle properties, indicate that the depth of diamond formation varies from the lower lithosphere in the upper part of the upper mantle (≈150-250 km) to the bottom of the lower mantle. At the same time, the diamonds containing mineral inclusions, characteristic of the lower mantle, account for only the first percents of the general number of diamonds. Conclusions. The transport of diamonds from different depths of their origin is a reliable indication of convection processes (as a plume activity) in the mantle. This information provides evidence to the real existence of plumes, which is important in the context of ongoing discussions on the depth of their origin. However, the study of mineral inclusions in diamonds, particularly in superdeep diamonds, is a challenging task due to the retrograde changes, resorption and sometimes complete dissolution on their way to the surface. These circumstances minimize the probability of occurrence of superdeep diamonds and require consideration when making judgements about the reality of existence of superdeep diamonds.
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