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Fluidal pyroclasts reveal the intensity of peralkaline rhyolite pumice cone eruptions

机译:流体的火山碎屑揭示了高碱性流纹岩流石浮石的爆发强度

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摘要

Peralkaline rhyolites are medium to low viscosity, volatile-rich magmas typically associated with rift zones and extensional settings. The dynamics of peralkaline rhyolite eruptions remain elusive with no direct observations recorded, significantly hindering the assessment of hazard and risk. Here we describe uniquely-preserved, fluidal-shaped pyroclasts found within pumice cone deposits at Aluto, a peralkaline rhyolite caldera in the Main Ethiopian Rift. We use a combination of field-observations, geochemistry, X-ray computed microtomography (XCT) and thermal-modelling to investigate how these pyroclasts are formed. We find that they deform during flight and, depending on size, quench prior to deposition or continue to inflate then quench in-situ. These findings reveal important characteristics of the eruptions that gave rise to them: that despite the relatively low viscosity of these magmas, and similarities to basaltic scoria-cone deposits, moderate to intense, unstable, eruption columns are developed; meaning that such eruptions can generate extensive tephra-fall and pyroclastic density currents.
机译:高碱性流纹岩是中等至低粘度,富含挥发物的岩浆,通常与裂谷带和伸展带有关。碱性钾盐流纹岩喷发的动力学仍然难以捉摸,没有直接观察到的记录,严重阻碍了对危险和风险的评估。在这里,我们描述了在主要埃塞俄比亚裂谷的碱性碱性流纹岩破火山口Aluto的浮石锥体沉积物中发现的独特保存的,流体状的火山碎屑。我们结合使用现场观测,地球化学,X射线计算机断层扫描(XCT)和热模型研究了这些破火山岩是如何形成的。我们发现它们在飞行过程中会变形,并且取决于尺寸,在沉积之前会淬火或继续膨胀然后就地淬火。这些发现揭示了引起这些喷发的重要特征:尽管这些岩浆的粘度相对较低,并且与玄武质鳞茎锥沉积物相似,但仍发育了中度至强度,不稳定的喷发柱。意味着这种喷发会产生大量的台风落石和火山碎屑流。

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