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Post-eruptive mobility of lithium in volcanic rocks

机译:火山岩中锂的喷发后迁移率

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摘要

To reflect magmatic conditions, volcanic rocks must retain their compositions through eruption and post-eruptive cooling. Mostly, this is the case. However, welded ignimbrites from the Yellowstone–Snake River Plain magmatic province reveal systematic modification of the lithium (Li) inventory by post-eruptive processes. Here we show that phenocrysts from slowly cooled microcrystalline ignimbrite interiors consistently have significantly more Li than their rapidly quenched, glassy, counterparts. The strong association with host lithology and the invariance of other trace elements indicate that Li remains mobile long after eruption and readily passes into phenocrysts via diffusion as groundmass crystallisation increases the Li contents of the last remaining melts. Li isotopic measurements reveal that this diffusion during cooling combined with efficient degassing on the surface may significantly affect the Li inventory and isotopic compositions of volcanic rocks. Utilisation of Li for petrogenetic studies is therefore crucially dependent on the ability to ‘see through’ such post-eruptive processes.
机译:为了反映岩浆条件,火山岩必须通过喷发和喷发后的冷却来保持其成分。通常情况就是这样。然而,黄石-蛇河平原岩浆省的焊接火成岩显示出喷发后过程对锂(Li)存量的系统修饰。在这里,我们表明,缓慢冷却的微晶火成岩内部的隐晶始终具有比其快速淬灭的玻璃态对应物更多的Li含量。与基质岩性的强相关性以及其他微量元素的不变性表明,锂在喷发后很长一段时间仍保持活动状态,并且由于地层结晶增加了最后剩余熔体的锂含量,因此很容易通过扩散进入苯晶。锂同位素测量表明,冷却过程中的这种扩散与表面的有效脱气相结合,可能会显着影响火山岩的锂储量和同位素组成。因此,锂在岩石成因研究中的应用关键取决于能否“透视”这样的喷发后过程。

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