自主金刚石砂矿的起源

Q4 Earth and Planetary Sciences
V. Shkodzinsky
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引用次数: 0

摘要

所获得的地球热吸积的证据表明,金伯利岩、煌斑岩和钻石是由全球岩浆洋底部橄榄岩部分的残余熔体形成的,这些熔体是吸积过程中输入的巨大冲击热所产生的。菱形十二面体和圆形钻石是具有未知母矿脉的独立砂矿的特征,出现在相对富含硅酸的粘性岩浆中。其中二氧化碳含量低,在凝固保存的气相内部高压的影响下,导致上升的高温柱的凝固部分沸腾深度小、减压凝固和爆炸,并形成体积不显著的爆炸性火山碎屑。因此,爆炸产物主要喷射到地球表面,形成金刚石凝灰岩和凝灰岩。它们的冲刷导致了自主砂矿的形成,因此不可能找到金伯利岩管,即所谓的钻石母矿脉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ORIGIN OF AUTONOMOUS DIAMOND PLACERS
The obtained evidences of the hot accretion of Earth indicates that kimberlites, lamproites and diamonds were formed from residual melts of the bottom peridotite parts in global magmatic ocean generated as a result of the huge impact heat input during accretion. Rhombic-dodecahedron and rounded diamonds, characteristic of autonomous placers with an unknown mother lode, appeared in relatively silicic acid-rich viscous magmas. The low content of carbon dioxide in them led to a small boiling depth, decompression solidification and explosion of solidified parts of rising pyrogeic columns under the influence of the high internal pressure of gas phase preserved by solidification and to the formation of explosive diatremes insignificant in volume. Therefore, explosion products were ejected mainly onto the Earth’s surface and formed diamond tuffs and tuffizites. Their wash out has led to the formation of autonomous diamond placers, for which it is not possible to find kimberlite pipes, the supposed mother lodes of diamonds.
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来源期刊
Geology and Mineral Resources of Siberia
Geology and Mineral Resources of Siberia Earth and Planetary Sciences-Geology
CiteScore
0.30
自引率
0.00%
发文量
23
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