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The origin of pelletal lapilli in explosive kimberlite eruptions

机译:爆炸性金伯利岩爆发中粒状lapilli的起源

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摘要

Kimberlites are volatile-rich magmas from mantle depths of ≥150?km and are the primary source of diamonds. Kimberlite volcanism involves the formation of diverging pipes or diatremes, which are the locus of high-intensity explosive eruptions. A conspicuous and previously enigmatic feature of diatreme fills are 'pelletal lapilli'—well-rounded clasts consisting of an inner 'seed' particle with a complex rim, thought to represent quenched juvenile melt. Here we show that these coincide with a transition from magmatic to pyroclastic behaviour, thus offering fundamental insights into eruption dynamics and constraints on vent conditions. We propose that pelletal lapilli are formed when fluid melts intrude into earlier volcaniclastic infill close to the diatreme root zone. Intensive degassing produces a gas jet in which locally scavenged particles are simultaneously fluidised and coated by a spray of low-viscosity melt. A similar origin may apply to pelletal lapilli in other alkaline volcanic rocks, including carbonatites, kamafugites and melilitites.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:金伯利岩是地幔深度≥150?km的富含挥发物的岩浆,是钻石的主要来源。金伯利岩火山活动涉及形成高强度爆炸爆发的发散管道或超热现象。死角填充物的一个显着的,以前难以捉摸的特征是“丸状lapilli”-由内部的“种子”颗粒和复杂的边缘组成的圆润的碎屑,被认为代表淬火的少年熔体。在这里,我们表明这些与岩浆行为向火山碎屑性转变相吻合,从而提供了有关喷发动力学和喷口条件约束的基本见识。我们建议当流体融化进入较早的根部区域附近的早期火山碎屑岩中时,会形成粒状的lapilli。强烈的脱气产生了一种气体喷射,其中局部清除的颗粒同时被流化并通过低粘度熔体的喷射进行涂覆。类似的起源可能适用于其他碱性火山岩中的颗粒状lapilli,包括碳酸盐岩,卡马富奇岩和变硅质岩。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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